xref: /linux/mm/vmalloc.c (revision 062eacf57ad91b5c272f89dc964fd6dd9715ea7d)
1457c8996SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
21da177e4SLinus Torvalds /*
31da177e4SLinus Torvalds  *  Copyright (C) 1993  Linus Torvalds
41da177e4SLinus Torvalds  *  Support of BIGMEM added by Gerhard Wichert, Siemens AG, July 1999
51da177e4SLinus Torvalds  *  SMP-safe vmalloc/vfree/ioremap, Tigran Aivazian <tigran@veritas.com>, May 2000
61da177e4SLinus Torvalds  *  Major rework to support vmap/vunmap, Christoph Hellwig, SGI, August 2002
7930fc45aSChristoph Lameter  *  Numa awareness, Christoph Lameter, SGI, June 2005
8d758ffe6SUladzislau Rezki (Sony)  *  Improving global KVA allocator, Uladzislau Rezki, Sony, May 2019
91da177e4SLinus Torvalds  */
101da177e4SLinus Torvalds 
11db64fe02SNick Piggin #include <linux/vmalloc.h>
121da177e4SLinus Torvalds #include <linux/mm.h>
131da177e4SLinus Torvalds #include <linux/module.h>
141da177e4SLinus Torvalds #include <linux/highmem.h>
15c3edc401SIngo Molnar #include <linux/sched/signal.h>
161da177e4SLinus Torvalds #include <linux/slab.h>
171da177e4SLinus Torvalds #include <linux/spinlock.h>
181da177e4SLinus Torvalds #include <linux/interrupt.h>
195f6a6a9cSAlexey Dobriyan #include <linux/proc_fs.h>
20a10aa579SChristoph Lameter #include <linux/seq_file.h>
21868b104dSRick Edgecombe #include <linux/set_memory.h>
223ac7fe5aSThomas Gleixner #include <linux/debugobjects.h>
2323016969SChristoph Lameter #include <linux/kallsyms.h>
24db64fe02SNick Piggin #include <linux/list.h>
254da56b99SChris Wilson #include <linux/notifier.h>
26db64fe02SNick Piggin #include <linux/rbtree.h>
270f14599cSMatthew Wilcox (Oracle) #include <linux/xarray.h>
285da96bddSMel Gorman #include <linux/io.h>
29db64fe02SNick Piggin #include <linux/rcupdate.h>
30f0aa6617STejun Heo #include <linux/pfn.h>
3189219d37SCatalin Marinas #include <linux/kmemleak.h>
3260063497SArun Sharma #include <linux/atomic.h>
333b32123dSGideon Israel Dsouza #include <linux/compiler.h>
344e5aa1f4SShakeel Butt #include <linux/memcontrol.h>
3532fcfd40SAl Viro #include <linux/llist.h>
364c91c07cSLorenzo Stoakes #include <linux/uio.h>
370f616be1SToshi Kani #include <linux/bitops.h>
3868ad4a33SUladzislau Rezki (Sony) #include <linux/rbtree_augmented.h>
39bdebd6a2SJann Horn #include <linux/overflow.h>
40c0eb315aSNicholas Piggin #include <linux/pgtable.h>
41f7ee1f13SChristophe Leroy #include <linux/hugetlb.h>
42451769ebSMichal Hocko #include <linux/sched/mm.h>
431da177e4SLinus Torvalds #include <asm/tlbflush.h>
442dca6999SDavid Miller #include <asm/shmparam.h>
451da177e4SLinus Torvalds 
46cf243da6SUladzislau Rezki (Sony) #define CREATE_TRACE_POINTS
47cf243da6SUladzislau Rezki (Sony) #include <trace/events/vmalloc.h>
48cf243da6SUladzislau Rezki (Sony) 
49dd56b046SMel Gorman #include "internal.h"
502a681cfaSJoerg Roedel #include "pgalloc-track.h"
51dd56b046SMel Gorman 
5282a70ce0SChristoph Hellwig #ifdef CONFIG_HAVE_ARCH_HUGE_VMAP
5382a70ce0SChristoph Hellwig static unsigned int __ro_after_init ioremap_max_page_shift = BITS_PER_LONG - 1;
5482a70ce0SChristoph Hellwig 
5582a70ce0SChristoph Hellwig static int __init set_nohugeiomap(char *str)
5682a70ce0SChristoph Hellwig {
5782a70ce0SChristoph Hellwig 	ioremap_max_page_shift = PAGE_SHIFT;
5882a70ce0SChristoph Hellwig 	return 0;
5982a70ce0SChristoph Hellwig }
6082a70ce0SChristoph Hellwig early_param("nohugeiomap", set_nohugeiomap);
6182a70ce0SChristoph Hellwig #else /* CONFIG_HAVE_ARCH_HUGE_VMAP */
6282a70ce0SChristoph Hellwig static const unsigned int ioremap_max_page_shift = PAGE_SHIFT;
6382a70ce0SChristoph Hellwig #endif	/* CONFIG_HAVE_ARCH_HUGE_VMAP */
6482a70ce0SChristoph Hellwig 
65121e6f32SNicholas Piggin #ifdef CONFIG_HAVE_ARCH_HUGE_VMALLOC
66121e6f32SNicholas Piggin static bool __ro_after_init vmap_allow_huge = true;
67121e6f32SNicholas Piggin 
68121e6f32SNicholas Piggin static int __init set_nohugevmalloc(char *str)
69121e6f32SNicholas Piggin {
70121e6f32SNicholas Piggin 	vmap_allow_huge = false;
71121e6f32SNicholas Piggin 	return 0;
72121e6f32SNicholas Piggin }
73121e6f32SNicholas Piggin early_param("nohugevmalloc", set_nohugevmalloc);
74121e6f32SNicholas Piggin #else /* CONFIG_HAVE_ARCH_HUGE_VMALLOC */
75121e6f32SNicholas Piggin static const bool vmap_allow_huge = false;
76121e6f32SNicholas Piggin #endif	/* CONFIG_HAVE_ARCH_HUGE_VMALLOC */
77121e6f32SNicholas Piggin 
78186525bdSIngo Molnar bool is_vmalloc_addr(const void *x)
79186525bdSIngo Molnar {
804aff1dc4SAndrey Konovalov 	unsigned long addr = (unsigned long)kasan_reset_tag(x);
81186525bdSIngo Molnar 
82186525bdSIngo Molnar 	return addr >= VMALLOC_START && addr < VMALLOC_END;
83186525bdSIngo Molnar }
84186525bdSIngo Molnar EXPORT_SYMBOL(is_vmalloc_addr);
85186525bdSIngo Molnar 
8632fcfd40SAl Viro struct vfree_deferred {
8732fcfd40SAl Viro 	struct llist_head list;
8832fcfd40SAl Viro 	struct work_struct wq;
8932fcfd40SAl Viro };
9032fcfd40SAl Viro static DEFINE_PER_CPU(struct vfree_deferred, vfree_deferred);
9132fcfd40SAl Viro 
92db64fe02SNick Piggin /*** Page table manipulation functions ***/
935e9e3d77SNicholas Piggin static int vmap_pte_range(pmd_t *pmd, unsigned long addr, unsigned long end,
945e9e3d77SNicholas Piggin 			phys_addr_t phys_addr, pgprot_t prot,
95f7ee1f13SChristophe Leroy 			unsigned int max_page_shift, pgtbl_mod_mask *mask)
965e9e3d77SNicholas Piggin {
975e9e3d77SNicholas Piggin 	pte_t *pte;
985e9e3d77SNicholas Piggin 	u64 pfn;
99f7ee1f13SChristophe Leroy 	unsigned long size = PAGE_SIZE;
1005e9e3d77SNicholas Piggin 
1015e9e3d77SNicholas Piggin 	pfn = phys_addr >> PAGE_SHIFT;
1025e9e3d77SNicholas Piggin 	pte = pte_alloc_kernel_track(pmd, addr, mask);
1035e9e3d77SNicholas Piggin 	if (!pte)
1045e9e3d77SNicholas Piggin 		return -ENOMEM;
1055e9e3d77SNicholas Piggin 	do {
1065e9e3d77SNicholas Piggin 		BUG_ON(!pte_none(*pte));
107f7ee1f13SChristophe Leroy 
108f7ee1f13SChristophe Leroy #ifdef CONFIG_HUGETLB_PAGE
109f7ee1f13SChristophe Leroy 		size = arch_vmap_pte_range_map_size(addr, end, pfn, max_page_shift);
110f7ee1f13SChristophe Leroy 		if (size != PAGE_SIZE) {
111f7ee1f13SChristophe Leroy 			pte_t entry = pfn_pte(pfn, prot);
112f7ee1f13SChristophe Leroy 
113f7ee1f13SChristophe Leroy 			entry = arch_make_huge_pte(entry, ilog2(size), 0);
114f7ee1f13SChristophe Leroy 			set_huge_pte_at(&init_mm, addr, pte, entry);
115f7ee1f13SChristophe Leroy 			pfn += PFN_DOWN(size);
116f7ee1f13SChristophe Leroy 			continue;
117f7ee1f13SChristophe Leroy 		}
118f7ee1f13SChristophe Leroy #endif
1195e9e3d77SNicholas Piggin 		set_pte_at(&init_mm, addr, pte, pfn_pte(pfn, prot));
1205e9e3d77SNicholas Piggin 		pfn++;
121f7ee1f13SChristophe Leroy 	} while (pte += PFN_DOWN(size), addr += size, addr != end);
1225e9e3d77SNicholas Piggin 	*mask |= PGTBL_PTE_MODIFIED;
1235e9e3d77SNicholas Piggin 	return 0;
1245e9e3d77SNicholas Piggin }
1255e9e3d77SNicholas Piggin 
1265e9e3d77SNicholas Piggin static int vmap_try_huge_pmd(pmd_t *pmd, unsigned long addr, unsigned long end,
1275e9e3d77SNicholas Piggin 			phys_addr_t phys_addr, pgprot_t prot,
1285e9e3d77SNicholas Piggin 			unsigned int max_page_shift)
1295e9e3d77SNicholas Piggin {
1305e9e3d77SNicholas Piggin 	if (max_page_shift < PMD_SHIFT)
1315e9e3d77SNicholas Piggin 		return 0;
1325e9e3d77SNicholas Piggin 
1335e9e3d77SNicholas Piggin 	if (!arch_vmap_pmd_supported(prot))
1345e9e3d77SNicholas Piggin 		return 0;
1355e9e3d77SNicholas Piggin 
1365e9e3d77SNicholas Piggin 	if ((end - addr) != PMD_SIZE)
1375e9e3d77SNicholas Piggin 		return 0;
1385e9e3d77SNicholas Piggin 
1395e9e3d77SNicholas Piggin 	if (!IS_ALIGNED(addr, PMD_SIZE))
1405e9e3d77SNicholas Piggin 		return 0;
1415e9e3d77SNicholas Piggin 
1425e9e3d77SNicholas Piggin 	if (!IS_ALIGNED(phys_addr, PMD_SIZE))
1435e9e3d77SNicholas Piggin 		return 0;
1445e9e3d77SNicholas Piggin 
1455e9e3d77SNicholas Piggin 	if (pmd_present(*pmd) && !pmd_free_pte_page(pmd, addr))
1465e9e3d77SNicholas Piggin 		return 0;
1475e9e3d77SNicholas Piggin 
1485e9e3d77SNicholas Piggin 	return pmd_set_huge(pmd, phys_addr, prot);
1495e9e3d77SNicholas Piggin }
1505e9e3d77SNicholas Piggin 
1515e9e3d77SNicholas Piggin static int vmap_pmd_range(pud_t *pud, unsigned long addr, unsigned long end,
1525e9e3d77SNicholas Piggin 			phys_addr_t phys_addr, pgprot_t prot,
1535e9e3d77SNicholas Piggin 			unsigned int max_page_shift, pgtbl_mod_mask *mask)
1545e9e3d77SNicholas Piggin {
1555e9e3d77SNicholas Piggin 	pmd_t *pmd;
1565e9e3d77SNicholas Piggin 	unsigned long next;
1575e9e3d77SNicholas Piggin 
1585e9e3d77SNicholas Piggin 	pmd = pmd_alloc_track(&init_mm, pud, addr, mask);
1595e9e3d77SNicholas Piggin 	if (!pmd)
1605e9e3d77SNicholas Piggin 		return -ENOMEM;
1615e9e3d77SNicholas Piggin 	do {
1625e9e3d77SNicholas Piggin 		next = pmd_addr_end(addr, end);
1635e9e3d77SNicholas Piggin 
1645e9e3d77SNicholas Piggin 		if (vmap_try_huge_pmd(pmd, addr, next, phys_addr, prot,
1655e9e3d77SNicholas Piggin 					max_page_shift)) {
1665e9e3d77SNicholas Piggin 			*mask |= PGTBL_PMD_MODIFIED;
1675e9e3d77SNicholas Piggin 			continue;
1685e9e3d77SNicholas Piggin 		}
1695e9e3d77SNicholas Piggin 
170f7ee1f13SChristophe Leroy 		if (vmap_pte_range(pmd, addr, next, phys_addr, prot, max_page_shift, mask))
1715e9e3d77SNicholas Piggin 			return -ENOMEM;
1725e9e3d77SNicholas Piggin 	} while (pmd++, phys_addr += (next - addr), addr = next, addr != end);
1735e9e3d77SNicholas Piggin 	return 0;
1745e9e3d77SNicholas Piggin }
1755e9e3d77SNicholas Piggin 
1765e9e3d77SNicholas Piggin static int vmap_try_huge_pud(pud_t *pud, unsigned long addr, unsigned long end,
1775e9e3d77SNicholas Piggin 			phys_addr_t phys_addr, pgprot_t prot,
1785e9e3d77SNicholas Piggin 			unsigned int max_page_shift)
1795e9e3d77SNicholas Piggin {
1805e9e3d77SNicholas Piggin 	if (max_page_shift < PUD_SHIFT)
1815e9e3d77SNicholas Piggin 		return 0;
1825e9e3d77SNicholas Piggin 
1835e9e3d77SNicholas Piggin 	if (!arch_vmap_pud_supported(prot))
1845e9e3d77SNicholas Piggin 		return 0;
1855e9e3d77SNicholas Piggin 
1865e9e3d77SNicholas Piggin 	if ((end - addr) != PUD_SIZE)
1875e9e3d77SNicholas Piggin 		return 0;
1885e9e3d77SNicholas Piggin 
1895e9e3d77SNicholas Piggin 	if (!IS_ALIGNED(addr, PUD_SIZE))
1905e9e3d77SNicholas Piggin 		return 0;
1915e9e3d77SNicholas Piggin 
1925e9e3d77SNicholas Piggin 	if (!IS_ALIGNED(phys_addr, PUD_SIZE))
1935e9e3d77SNicholas Piggin 		return 0;
1945e9e3d77SNicholas Piggin 
1955e9e3d77SNicholas Piggin 	if (pud_present(*pud) && !pud_free_pmd_page(pud, addr))
1965e9e3d77SNicholas Piggin 		return 0;
1975e9e3d77SNicholas Piggin 
1985e9e3d77SNicholas Piggin 	return pud_set_huge(pud, phys_addr, prot);
1995e9e3d77SNicholas Piggin }
2005e9e3d77SNicholas Piggin 
2015e9e3d77SNicholas Piggin static int vmap_pud_range(p4d_t *p4d, unsigned long addr, unsigned long end,
2025e9e3d77SNicholas Piggin 			phys_addr_t phys_addr, pgprot_t prot,
2035e9e3d77SNicholas Piggin 			unsigned int max_page_shift, pgtbl_mod_mask *mask)
2045e9e3d77SNicholas Piggin {
2055e9e3d77SNicholas Piggin 	pud_t *pud;
2065e9e3d77SNicholas Piggin 	unsigned long next;
2075e9e3d77SNicholas Piggin 
2085e9e3d77SNicholas Piggin 	pud = pud_alloc_track(&init_mm, p4d, addr, mask);
2095e9e3d77SNicholas Piggin 	if (!pud)
2105e9e3d77SNicholas Piggin 		return -ENOMEM;
2115e9e3d77SNicholas Piggin 	do {
2125e9e3d77SNicholas Piggin 		next = pud_addr_end(addr, end);
2135e9e3d77SNicholas Piggin 
2145e9e3d77SNicholas Piggin 		if (vmap_try_huge_pud(pud, addr, next, phys_addr, prot,
2155e9e3d77SNicholas Piggin 					max_page_shift)) {
2165e9e3d77SNicholas Piggin 			*mask |= PGTBL_PUD_MODIFIED;
2175e9e3d77SNicholas Piggin 			continue;
2185e9e3d77SNicholas Piggin 		}
2195e9e3d77SNicholas Piggin 
2205e9e3d77SNicholas Piggin 		if (vmap_pmd_range(pud, addr, next, phys_addr, prot,
2215e9e3d77SNicholas Piggin 					max_page_shift, mask))
2225e9e3d77SNicholas Piggin 			return -ENOMEM;
2235e9e3d77SNicholas Piggin 	} while (pud++, phys_addr += (next - addr), addr = next, addr != end);
2245e9e3d77SNicholas Piggin 	return 0;
2255e9e3d77SNicholas Piggin }
2265e9e3d77SNicholas Piggin 
2275e9e3d77SNicholas Piggin static int vmap_try_huge_p4d(p4d_t *p4d, unsigned long addr, unsigned long end,
2285e9e3d77SNicholas Piggin 			phys_addr_t phys_addr, pgprot_t prot,
2295e9e3d77SNicholas Piggin 			unsigned int max_page_shift)
2305e9e3d77SNicholas Piggin {
2315e9e3d77SNicholas Piggin 	if (max_page_shift < P4D_SHIFT)
2325e9e3d77SNicholas Piggin 		return 0;
2335e9e3d77SNicholas Piggin 
2345e9e3d77SNicholas Piggin 	if (!arch_vmap_p4d_supported(prot))
2355e9e3d77SNicholas Piggin 		return 0;
2365e9e3d77SNicholas Piggin 
2375e9e3d77SNicholas Piggin 	if ((end - addr) != P4D_SIZE)
2385e9e3d77SNicholas Piggin 		return 0;
2395e9e3d77SNicholas Piggin 
2405e9e3d77SNicholas Piggin 	if (!IS_ALIGNED(addr, P4D_SIZE))
2415e9e3d77SNicholas Piggin 		return 0;
2425e9e3d77SNicholas Piggin 
2435e9e3d77SNicholas Piggin 	if (!IS_ALIGNED(phys_addr, P4D_SIZE))
2445e9e3d77SNicholas Piggin 		return 0;
2455e9e3d77SNicholas Piggin 
2465e9e3d77SNicholas Piggin 	if (p4d_present(*p4d) && !p4d_free_pud_page(p4d, addr))
2475e9e3d77SNicholas Piggin 		return 0;
2485e9e3d77SNicholas Piggin 
2495e9e3d77SNicholas Piggin 	return p4d_set_huge(p4d, phys_addr, prot);
2505e9e3d77SNicholas Piggin }
2515e9e3d77SNicholas Piggin 
2525e9e3d77SNicholas Piggin static int vmap_p4d_range(pgd_t *pgd, unsigned long addr, unsigned long end,
2535e9e3d77SNicholas Piggin 			phys_addr_t phys_addr, pgprot_t prot,
2545e9e3d77SNicholas Piggin 			unsigned int max_page_shift, pgtbl_mod_mask *mask)
2555e9e3d77SNicholas Piggin {
2565e9e3d77SNicholas Piggin 	p4d_t *p4d;
2575e9e3d77SNicholas Piggin 	unsigned long next;
2585e9e3d77SNicholas Piggin 
2595e9e3d77SNicholas Piggin 	p4d = p4d_alloc_track(&init_mm, pgd, addr, mask);
2605e9e3d77SNicholas Piggin 	if (!p4d)
2615e9e3d77SNicholas Piggin 		return -ENOMEM;
2625e9e3d77SNicholas Piggin 	do {
2635e9e3d77SNicholas Piggin 		next = p4d_addr_end(addr, end);
2645e9e3d77SNicholas Piggin 
2655e9e3d77SNicholas Piggin 		if (vmap_try_huge_p4d(p4d, addr, next, phys_addr, prot,
2665e9e3d77SNicholas Piggin 					max_page_shift)) {
2675e9e3d77SNicholas Piggin 			*mask |= PGTBL_P4D_MODIFIED;
2685e9e3d77SNicholas Piggin 			continue;
2695e9e3d77SNicholas Piggin 		}
2705e9e3d77SNicholas Piggin 
2715e9e3d77SNicholas Piggin 		if (vmap_pud_range(p4d, addr, next, phys_addr, prot,
2725e9e3d77SNicholas Piggin 					max_page_shift, mask))
2735e9e3d77SNicholas Piggin 			return -ENOMEM;
2745e9e3d77SNicholas Piggin 	} while (p4d++, phys_addr += (next - addr), addr = next, addr != end);
2755e9e3d77SNicholas Piggin 	return 0;
2765e9e3d77SNicholas Piggin }
2775e9e3d77SNicholas Piggin 
2785d87510dSNicholas Piggin static int vmap_range_noflush(unsigned long addr, unsigned long end,
2795e9e3d77SNicholas Piggin 			phys_addr_t phys_addr, pgprot_t prot,
2805e9e3d77SNicholas Piggin 			unsigned int max_page_shift)
2815e9e3d77SNicholas Piggin {
2825e9e3d77SNicholas Piggin 	pgd_t *pgd;
2835e9e3d77SNicholas Piggin 	unsigned long start;
2845e9e3d77SNicholas Piggin 	unsigned long next;
2855e9e3d77SNicholas Piggin 	int err;
2865e9e3d77SNicholas Piggin 	pgtbl_mod_mask mask = 0;
2875e9e3d77SNicholas Piggin 
2885e9e3d77SNicholas Piggin 	might_sleep();
2895e9e3d77SNicholas Piggin 	BUG_ON(addr >= end);
2905e9e3d77SNicholas Piggin 
2915e9e3d77SNicholas Piggin 	start = addr;
2925e9e3d77SNicholas Piggin 	pgd = pgd_offset_k(addr);
2935e9e3d77SNicholas Piggin 	do {
2945e9e3d77SNicholas Piggin 		next = pgd_addr_end(addr, end);
2955e9e3d77SNicholas Piggin 		err = vmap_p4d_range(pgd, addr, next, phys_addr, prot,
2965e9e3d77SNicholas Piggin 					max_page_shift, &mask);
2975e9e3d77SNicholas Piggin 		if (err)
2985e9e3d77SNicholas Piggin 			break;
2995e9e3d77SNicholas Piggin 	} while (pgd++, phys_addr += (next - addr), addr = next, addr != end);
3005e9e3d77SNicholas Piggin 
3015e9e3d77SNicholas Piggin 	if (mask & ARCH_PAGE_TABLE_SYNC_MASK)
3025e9e3d77SNicholas Piggin 		arch_sync_kernel_mappings(start, end);
3035e9e3d77SNicholas Piggin 
3045e9e3d77SNicholas Piggin 	return err;
3055e9e3d77SNicholas Piggin }
306b221385bSAdrian Bunk 
30782a70ce0SChristoph Hellwig int ioremap_page_range(unsigned long addr, unsigned long end,
30882a70ce0SChristoph Hellwig 		phys_addr_t phys_addr, pgprot_t prot)
3095d87510dSNicholas Piggin {
3105d87510dSNicholas Piggin 	int err;
3115d87510dSNicholas Piggin 
3128491502fSChristoph Hellwig 	err = vmap_range_noflush(addr, end, phys_addr, pgprot_nx(prot),
31382a70ce0SChristoph Hellwig 				 ioremap_max_page_shift);
3145d87510dSNicholas Piggin 	flush_cache_vmap(addr, end);
315b073d7f8SAlexander Potapenko 	if (!err)
316fdea03e1SAlexander Potapenko 		err = kmsan_ioremap_page_range(addr, end, phys_addr, prot,
317b073d7f8SAlexander Potapenko 					       ioremap_max_page_shift);
3185d87510dSNicholas Piggin 	return err;
3195d87510dSNicholas Piggin }
3205d87510dSNicholas Piggin 
3212ba3e694SJoerg Roedel static void vunmap_pte_range(pmd_t *pmd, unsigned long addr, unsigned long end,
3222ba3e694SJoerg Roedel 			     pgtbl_mod_mask *mask)
3231da177e4SLinus Torvalds {
3241da177e4SLinus Torvalds 	pte_t *pte;
3251da177e4SLinus Torvalds 
3261da177e4SLinus Torvalds 	pte = pte_offset_kernel(pmd, addr);
3271da177e4SLinus Torvalds 	do {
3281da177e4SLinus Torvalds 		pte_t ptent = ptep_get_and_clear(&init_mm, addr, pte);
3291da177e4SLinus Torvalds 		WARN_ON(!pte_none(ptent) && !pte_present(ptent));
3301da177e4SLinus Torvalds 	} while (pte++, addr += PAGE_SIZE, addr != end);
3312ba3e694SJoerg Roedel 	*mask |= PGTBL_PTE_MODIFIED;
3321da177e4SLinus Torvalds }
3331da177e4SLinus Torvalds 
3342ba3e694SJoerg Roedel static void vunmap_pmd_range(pud_t *pud, unsigned long addr, unsigned long end,
3352ba3e694SJoerg Roedel 			     pgtbl_mod_mask *mask)
3361da177e4SLinus Torvalds {
3371da177e4SLinus Torvalds 	pmd_t *pmd;
3381da177e4SLinus Torvalds 	unsigned long next;
3392ba3e694SJoerg Roedel 	int cleared;
3401da177e4SLinus Torvalds 
3411da177e4SLinus Torvalds 	pmd = pmd_offset(pud, addr);
3421da177e4SLinus Torvalds 	do {
3431da177e4SLinus Torvalds 		next = pmd_addr_end(addr, end);
3442ba3e694SJoerg Roedel 
3452ba3e694SJoerg Roedel 		cleared = pmd_clear_huge(pmd);
3462ba3e694SJoerg Roedel 		if (cleared || pmd_bad(*pmd))
3472ba3e694SJoerg Roedel 			*mask |= PGTBL_PMD_MODIFIED;
3482ba3e694SJoerg Roedel 
3492ba3e694SJoerg Roedel 		if (cleared)
350b9820d8fSToshi Kani 			continue;
3511da177e4SLinus Torvalds 		if (pmd_none_or_clear_bad(pmd))
3521da177e4SLinus Torvalds 			continue;
3532ba3e694SJoerg Roedel 		vunmap_pte_range(pmd, addr, next, mask);
354e47110e9SAneesh Kumar K.V 
355e47110e9SAneesh Kumar K.V 		cond_resched();
3561da177e4SLinus Torvalds 	} while (pmd++, addr = next, addr != end);
3571da177e4SLinus Torvalds }
3581da177e4SLinus Torvalds 
3592ba3e694SJoerg Roedel static void vunmap_pud_range(p4d_t *p4d, unsigned long addr, unsigned long end,
3602ba3e694SJoerg Roedel 			     pgtbl_mod_mask *mask)
3611da177e4SLinus Torvalds {
3621da177e4SLinus Torvalds 	pud_t *pud;
3631da177e4SLinus Torvalds 	unsigned long next;
3642ba3e694SJoerg Roedel 	int cleared;
3651da177e4SLinus Torvalds 
366c2febafcSKirill A. Shutemov 	pud = pud_offset(p4d, addr);
3671da177e4SLinus Torvalds 	do {
3681da177e4SLinus Torvalds 		next = pud_addr_end(addr, end);
3692ba3e694SJoerg Roedel 
3702ba3e694SJoerg Roedel 		cleared = pud_clear_huge(pud);
3712ba3e694SJoerg Roedel 		if (cleared || pud_bad(*pud))
3722ba3e694SJoerg Roedel 			*mask |= PGTBL_PUD_MODIFIED;
3732ba3e694SJoerg Roedel 
3742ba3e694SJoerg Roedel 		if (cleared)
375b9820d8fSToshi Kani 			continue;
3761da177e4SLinus Torvalds 		if (pud_none_or_clear_bad(pud))
3771da177e4SLinus Torvalds 			continue;
3782ba3e694SJoerg Roedel 		vunmap_pmd_range(pud, addr, next, mask);
3791da177e4SLinus Torvalds 	} while (pud++, addr = next, addr != end);
3801da177e4SLinus Torvalds }
3811da177e4SLinus Torvalds 
3822ba3e694SJoerg Roedel static void vunmap_p4d_range(pgd_t *pgd, unsigned long addr, unsigned long end,
3832ba3e694SJoerg Roedel 			     pgtbl_mod_mask *mask)
384c2febafcSKirill A. Shutemov {
385c2febafcSKirill A. Shutemov 	p4d_t *p4d;
386c2febafcSKirill A. Shutemov 	unsigned long next;
387c2febafcSKirill A. Shutemov 
388c2febafcSKirill A. Shutemov 	p4d = p4d_offset(pgd, addr);
389c2febafcSKirill A. Shutemov 	do {
390c2febafcSKirill A. Shutemov 		next = p4d_addr_end(addr, end);
3912ba3e694SJoerg Roedel 
392c8db8c26SLi kunyu 		p4d_clear_huge(p4d);
393c8db8c26SLi kunyu 		if (p4d_bad(*p4d))
3942ba3e694SJoerg Roedel 			*mask |= PGTBL_P4D_MODIFIED;
3952ba3e694SJoerg Roedel 
396c2febafcSKirill A. Shutemov 		if (p4d_none_or_clear_bad(p4d))
397c2febafcSKirill A. Shutemov 			continue;
3982ba3e694SJoerg Roedel 		vunmap_pud_range(p4d, addr, next, mask);
399c2febafcSKirill A. Shutemov 	} while (p4d++, addr = next, addr != end);
400c2febafcSKirill A. Shutemov }
401c2febafcSKirill A. Shutemov 
4024ad0ae8cSNicholas Piggin /*
4034ad0ae8cSNicholas Piggin  * vunmap_range_noflush is similar to vunmap_range, but does not
4044ad0ae8cSNicholas Piggin  * flush caches or TLBs.
405b521c43fSChristoph Hellwig  *
4064ad0ae8cSNicholas Piggin  * The caller is responsible for calling flush_cache_vmap() before calling
4074ad0ae8cSNicholas Piggin  * this function, and flush_tlb_kernel_range after it has returned
4084ad0ae8cSNicholas Piggin  * successfully (and before the addresses are expected to cause a page fault
4094ad0ae8cSNicholas Piggin  * or be re-mapped for something else, if TLB flushes are being delayed or
4104ad0ae8cSNicholas Piggin  * coalesced).
411b521c43fSChristoph Hellwig  *
4124ad0ae8cSNicholas Piggin  * This is an internal function only. Do not use outside mm/.
413b521c43fSChristoph Hellwig  */
414b073d7f8SAlexander Potapenko void __vunmap_range_noflush(unsigned long start, unsigned long end)
4151da177e4SLinus Torvalds {
4161da177e4SLinus Torvalds 	unsigned long next;
417b521c43fSChristoph Hellwig 	pgd_t *pgd;
4182ba3e694SJoerg Roedel 	unsigned long addr = start;
4192ba3e694SJoerg Roedel 	pgtbl_mod_mask mask = 0;
4201da177e4SLinus Torvalds 
4211da177e4SLinus Torvalds 	BUG_ON(addr >= end);
4221da177e4SLinus Torvalds 	pgd = pgd_offset_k(addr);
4231da177e4SLinus Torvalds 	do {
4241da177e4SLinus Torvalds 		next = pgd_addr_end(addr, end);
4252ba3e694SJoerg Roedel 		if (pgd_bad(*pgd))
4262ba3e694SJoerg Roedel 			mask |= PGTBL_PGD_MODIFIED;
4271da177e4SLinus Torvalds 		if (pgd_none_or_clear_bad(pgd))
4281da177e4SLinus Torvalds 			continue;
4292ba3e694SJoerg Roedel 		vunmap_p4d_range(pgd, addr, next, &mask);
4301da177e4SLinus Torvalds 	} while (pgd++, addr = next, addr != end);
4312ba3e694SJoerg Roedel 
4322ba3e694SJoerg Roedel 	if (mask & ARCH_PAGE_TABLE_SYNC_MASK)
4332ba3e694SJoerg Roedel 		arch_sync_kernel_mappings(start, end);
4341da177e4SLinus Torvalds }
4351da177e4SLinus Torvalds 
436b073d7f8SAlexander Potapenko void vunmap_range_noflush(unsigned long start, unsigned long end)
437b073d7f8SAlexander Potapenko {
438b073d7f8SAlexander Potapenko 	kmsan_vunmap_range_noflush(start, end);
439b073d7f8SAlexander Potapenko 	__vunmap_range_noflush(start, end);
440b073d7f8SAlexander Potapenko }
441b073d7f8SAlexander Potapenko 
4424ad0ae8cSNicholas Piggin /**
4434ad0ae8cSNicholas Piggin  * vunmap_range - unmap kernel virtual addresses
4444ad0ae8cSNicholas Piggin  * @addr: start of the VM area to unmap
4454ad0ae8cSNicholas Piggin  * @end: end of the VM area to unmap (non-inclusive)
4464ad0ae8cSNicholas Piggin  *
4474ad0ae8cSNicholas Piggin  * Clears any present PTEs in the virtual address range, flushes TLBs and
4484ad0ae8cSNicholas Piggin  * caches. Any subsequent access to the address before it has been re-mapped
4494ad0ae8cSNicholas Piggin  * is a kernel bug.
4504ad0ae8cSNicholas Piggin  */
4514ad0ae8cSNicholas Piggin void vunmap_range(unsigned long addr, unsigned long end)
4524ad0ae8cSNicholas Piggin {
4534ad0ae8cSNicholas Piggin 	flush_cache_vunmap(addr, end);
4544ad0ae8cSNicholas Piggin 	vunmap_range_noflush(addr, end);
4554ad0ae8cSNicholas Piggin 	flush_tlb_kernel_range(addr, end);
4564ad0ae8cSNicholas Piggin }
4574ad0ae8cSNicholas Piggin 
4580a264884SNicholas Piggin static int vmap_pages_pte_range(pmd_t *pmd, unsigned long addr,
4592ba3e694SJoerg Roedel 		unsigned long end, pgprot_t prot, struct page **pages, int *nr,
4602ba3e694SJoerg Roedel 		pgtbl_mod_mask *mask)
4611da177e4SLinus Torvalds {
4621da177e4SLinus Torvalds 	pte_t *pte;
4631da177e4SLinus Torvalds 
464db64fe02SNick Piggin 	/*
465db64fe02SNick Piggin 	 * nr is a running index into the array which helps higher level
466db64fe02SNick Piggin 	 * callers keep track of where we're up to.
467db64fe02SNick Piggin 	 */
468db64fe02SNick Piggin 
4692ba3e694SJoerg Roedel 	pte = pte_alloc_kernel_track(pmd, addr, mask);
4701da177e4SLinus Torvalds 	if (!pte)
4711da177e4SLinus Torvalds 		return -ENOMEM;
4721da177e4SLinus Torvalds 	do {
473db64fe02SNick Piggin 		struct page *page = pages[*nr];
474db64fe02SNick Piggin 
475db64fe02SNick Piggin 		if (WARN_ON(!pte_none(*pte)))
476db64fe02SNick Piggin 			return -EBUSY;
477db64fe02SNick Piggin 		if (WARN_ON(!page))
4781da177e4SLinus Torvalds 			return -ENOMEM;
4794fcdcc12SYury Norov 		if (WARN_ON(!pfn_valid(page_to_pfn(page))))
4804fcdcc12SYury Norov 			return -EINVAL;
4814fcdcc12SYury Norov 
4821da177e4SLinus Torvalds 		set_pte_at(&init_mm, addr, pte, mk_pte(page, prot));
483db64fe02SNick Piggin 		(*nr)++;
4841da177e4SLinus Torvalds 	} while (pte++, addr += PAGE_SIZE, addr != end);
4852ba3e694SJoerg Roedel 	*mask |= PGTBL_PTE_MODIFIED;
4861da177e4SLinus Torvalds 	return 0;
4871da177e4SLinus Torvalds }
4881da177e4SLinus Torvalds 
4890a264884SNicholas Piggin static int vmap_pages_pmd_range(pud_t *pud, unsigned long addr,
4902ba3e694SJoerg Roedel 		unsigned long end, pgprot_t prot, struct page **pages, int *nr,
4912ba3e694SJoerg Roedel 		pgtbl_mod_mask *mask)
4921da177e4SLinus Torvalds {
4931da177e4SLinus Torvalds 	pmd_t *pmd;
4941da177e4SLinus Torvalds 	unsigned long next;
4951da177e4SLinus Torvalds 
4962ba3e694SJoerg Roedel 	pmd = pmd_alloc_track(&init_mm, pud, addr, mask);
4971da177e4SLinus Torvalds 	if (!pmd)
4981da177e4SLinus Torvalds 		return -ENOMEM;
4991da177e4SLinus Torvalds 	do {
5001da177e4SLinus Torvalds 		next = pmd_addr_end(addr, end);
5010a264884SNicholas Piggin 		if (vmap_pages_pte_range(pmd, addr, next, prot, pages, nr, mask))
5021da177e4SLinus Torvalds 			return -ENOMEM;
5031da177e4SLinus Torvalds 	} while (pmd++, addr = next, addr != end);
5041da177e4SLinus Torvalds 	return 0;
5051da177e4SLinus Torvalds }
5061da177e4SLinus Torvalds 
5070a264884SNicholas Piggin static int vmap_pages_pud_range(p4d_t *p4d, unsigned long addr,
5082ba3e694SJoerg Roedel 		unsigned long end, pgprot_t prot, struct page **pages, int *nr,
5092ba3e694SJoerg Roedel 		pgtbl_mod_mask *mask)
5101da177e4SLinus Torvalds {
5111da177e4SLinus Torvalds 	pud_t *pud;
5121da177e4SLinus Torvalds 	unsigned long next;
5131da177e4SLinus Torvalds 
5142ba3e694SJoerg Roedel 	pud = pud_alloc_track(&init_mm, p4d, addr, mask);
5151da177e4SLinus Torvalds 	if (!pud)
5161da177e4SLinus Torvalds 		return -ENOMEM;
5171da177e4SLinus Torvalds 	do {
5181da177e4SLinus Torvalds 		next = pud_addr_end(addr, end);
5190a264884SNicholas Piggin 		if (vmap_pages_pmd_range(pud, addr, next, prot, pages, nr, mask))
5201da177e4SLinus Torvalds 			return -ENOMEM;
5211da177e4SLinus Torvalds 	} while (pud++, addr = next, addr != end);
5221da177e4SLinus Torvalds 	return 0;
5231da177e4SLinus Torvalds }
5241da177e4SLinus Torvalds 
5250a264884SNicholas Piggin static int vmap_pages_p4d_range(pgd_t *pgd, unsigned long addr,
5262ba3e694SJoerg Roedel 		unsigned long end, pgprot_t prot, struct page **pages, int *nr,
5272ba3e694SJoerg Roedel 		pgtbl_mod_mask *mask)
528c2febafcSKirill A. Shutemov {
529c2febafcSKirill A. Shutemov 	p4d_t *p4d;
530c2febafcSKirill A. Shutemov 	unsigned long next;
531c2febafcSKirill A. Shutemov 
5322ba3e694SJoerg Roedel 	p4d = p4d_alloc_track(&init_mm, pgd, addr, mask);
533c2febafcSKirill A. Shutemov 	if (!p4d)
534c2febafcSKirill A. Shutemov 		return -ENOMEM;
535c2febafcSKirill A. Shutemov 	do {
536c2febafcSKirill A. Shutemov 		next = p4d_addr_end(addr, end);
5370a264884SNicholas Piggin 		if (vmap_pages_pud_range(p4d, addr, next, prot, pages, nr, mask))
538c2febafcSKirill A. Shutemov 			return -ENOMEM;
539c2febafcSKirill A. Shutemov 	} while (p4d++, addr = next, addr != end);
540c2febafcSKirill A. Shutemov 	return 0;
541c2febafcSKirill A. Shutemov }
542c2febafcSKirill A. Shutemov 
543121e6f32SNicholas Piggin static int vmap_small_pages_range_noflush(unsigned long addr, unsigned long end,
544121e6f32SNicholas Piggin 		pgprot_t prot, struct page **pages)
545121e6f32SNicholas Piggin {
546121e6f32SNicholas Piggin 	unsigned long start = addr;
547121e6f32SNicholas Piggin 	pgd_t *pgd;
548121e6f32SNicholas Piggin 	unsigned long next;
549121e6f32SNicholas Piggin 	int err = 0;
550121e6f32SNicholas Piggin 	int nr = 0;
551121e6f32SNicholas Piggin 	pgtbl_mod_mask mask = 0;
552121e6f32SNicholas Piggin 
553121e6f32SNicholas Piggin 	BUG_ON(addr >= end);
554121e6f32SNicholas Piggin 	pgd = pgd_offset_k(addr);
555121e6f32SNicholas Piggin 	do {
556121e6f32SNicholas Piggin 		next = pgd_addr_end(addr, end);
557121e6f32SNicholas Piggin 		if (pgd_bad(*pgd))
558121e6f32SNicholas Piggin 			mask |= PGTBL_PGD_MODIFIED;
559121e6f32SNicholas Piggin 		err = vmap_pages_p4d_range(pgd, addr, next, prot, pages, &nr, &mask);
560121e6f32SNicholas Piggin 		if (err)
561121e6f32SNicholas Piggin 			return err;
562121e6f32SNicholas Piggin 	} while (pgd++, addr = next, addr != end);
563121e6f32SNicholas Piggin 
564121e6f32SNicholas Piggin 	if (mask & ARCH_PAGE_TABLE_SYNC_MASK)
565121e6f32SNicholas Piggin 		arch_sync_kernel_mappings(start, end);
566121e6f32SNicholas Piggin 
567121e6f32SNicholas Piggin 	return 0;
568121e6f32SNicholas Piggin }
569121e6f32SNicholas Piggin 
570b67177ecSNicholas Piggin /*
571b67177ecSNicholas Piggin  * vmap_pages_range_noflush is similar to vmap_pages_range, but does not
572b67177ecSNicholas Piggin  * flush caches.
573b67177ecSNicholas Piggin  *
574b67177ecSNicholas Piggin  * The caller is responsible for calling flush_cache_vmap() after this
575b67177ecSNicholas Piggin  * function returns successfully and before the addresses are accessed.
576b67177ecSNicholas Piggin  *
577b67177ecSNicholas Piggin  * This is an internal function only. Do not use outside mm/.
578b67177ecSNicholas Piggin  */
579b073d7f8SAlexander Potapenko int __vmap_pages_range_noflush(unsigned long addr, unsigned long end,
580121e6f32SNicholas Piggin 		pgprot_t prot, struct page **pages, unsigned int page_shift)
581121e6f32SNicholas Piggin {
582121e6f32SNicholas Piggin 	unsigned int i, nr = (end - addr) >> PAGE_SHIFT;
583121e6f32SNicholas Piggin 
584121e6f32SNicholas Piggin 	WARN_ON(page_shift < PAGE_SHIFT);
585121e6f32SNicholas Piggin 
586121e6f32SNicholas Piggin 	if (!IS_ENABLED(CONFIG_HAVE_ARCH_HUGE_VMALLOC) ||
587121e6f32SNicholas Piggin 			page_shift == PAGE_SHIFT)
588121e6f32SNicholas Piggin 		return vmap_small_pages_range_noflush(addr, end, prot, pages);
589121e6f32SNicholas Piggin 
590121e6f32SNicholas Piggin 	for (i = 0; i < nr; i += 1U << (page_shift - PAGE_SHIFT)) {
591121e6f32SNicholas Piggin 		int err;
592121e6f32SNicholas Piggin 
593121e6f32SNicholas Piggin 		err = vmap_range_noflush(addr, addr + (1UL << page_shift),
59408262ac5SMatthew Wilcox 					page_to_phys(pages[i]), prot,
595121e6f32SNicholas Piggin 					page_shift);
596121e6f32SNicholas Piggin 		if (err)
597121e6f32SNicholas Piggin 			return err;
598121e6f32SNicholas Piggin 
599121e6f32SNicholas Piggin 		addr += 1UL << page_shift;
600121e6f32SNicholas Piggin 	}
601121e6f32SNicholas Piggin 
602121e6f32SNicholas Piggin 	return 0;
603121e6f32SNicholas Piggin }
604121e6f32SNicholas Piggin 
605b073d7f8SAlexander Potapenko int vmap_pages_range_noflush(unsigned long addr, unsigned long end,
606b073d7f8SAlexander Potapenko 		pgprot_t prot, struct page **pages, unsigned int page_shift)
607b073d7f8SAlexander Potapenko {
60847ebd031SAlexander Potapenko 	int ret = kmsan_vmap_pages_range_noflush(addr, end, prot, pages,
60947ebd031SAlexander Potapenko 						 page_shift);
61047ebd031SAlexander Potapenko 
61147ebd031SAlexander Potapenko 	if (ret)
61247ebd031SAlexander Potapenko 		return ret;
613b073d7f8SAlexander Potapenko 	return __vmap_pages_range_noflush(addr, end, prot, pages, page_shift);
614b073d7f8SAlexander Potapenko }
615b073d7f8SAlexander Potapenko 
616b67177ecSNicholas Piggin /**
617b67177ecSNicholas Piggin  * vmap_pages_range - map pages to a kernel virtual address
618b67177ecSNicholas Piggin  * @addr: start of the VM area to map
619b67177ecSNicholas Piggin  * @end: end of the VM area to map (non-inclusive)
620b67177ecSNicholas Piggin  * @prot: page protection flags to use
621b67177ecSNicholas Piggin  * @pages: pages to map (always PAGE_SIZE pages)
622b67177ecSNicholas Piggin  * @page_shift: maximum shift that the pages may be mapped with, @pages must
623b67177ecSNicholas Piggin  * be aligned and contiguous up to at least this shift.
624b67177ecSNicholas Piggin  *
625b67177ecSNicholas Piggin  * RETURNS:
626b67177ecSNicholas Piggin  * 0 on success, -errno on failure.
627b67177ecSNicholas Piggin  */
628121e6f32SNicholas Piggin static int vmap_pages_range(unsigned long addr, unsigned long end,
629121e6f32SNicholas Piggin 		pgprot_t prot, struct page **pages, unsigned int page_shift)
630121e6f32SNicholas Piggin {
631121e6f32SNicholas Piggin 	int err;
632121e6f32SNicholas Piggin 
633121e6f32SNicholas Piggin 	err = vmap_pages_range_noflush(addr, end, prot, pages, page_shift);
634121e6f32SNicholas Piggin 	flush_cache_vmap(addr, end);
635121e6f32SNicholas Piggin 	return err;
636121e6f32SNicholas Piggin }
637121e6f32SNicholas Piggin 
63881ac3ad9SKAMEZAWA Hiroyuki int is_vmalloc_or_module_addr(const void *x)
63973bdf0a6SLinus Torvalds {
64073bdf0a6SLinus Torvalds 	/*
641ab4f2ee1SRussell King 	 * ARM, x86-64 and sparc64 put modules in a special place,
64273bdf0a6SLinus Torvalds 	 * and fall back on vmalloc() if that fails. Others
64373bdf0a6SLinus Torvalds 	 * just put it in the vmalloc space.
64473bdf0a6SLinus Torvalds 	 */
64573bdf0a6SLinus Torvalds #if defined(CONFIG_MODULES) && defined(MODULES_VADDR)
6464aff1dc4SAndrey Konovalov 	unsigned long addr = (unsigned long)kasan_reset_tag(x);
64773bdf0a6SLinus Torvalds 	if (addr >= MODULES_VADDR && addr < MODULES_END)
64873bdf0a6SLinus Torvalds 		return 1;
64973bdf0a6SLinus Torvalds #endif
65073bdf0a6SLinus Torvalds 	return is_vmalloc_addr(x);
65173bdf0a6SLinus Torvalds }
65201858469SDavid Howells EXPORT_SYMBOL_GPL(is_vmalloc_or_module_addr);
65373bdf0a6SLinus Torvalds 
65448667e7aSChristoph Lameter /*
655c0eb315aSNicholas Piggin  * Walk a vmap address to the struct page it maps. Huge vmap mappings will
656c0eb315aSNicholas Piggin  * return the tail page that corresponds to the base page address, which
657c0eb315aSNicholas Piggin  * matches small vmap mappings.
65848667e7aSChristoph Lameter  */
659add688fbSmalc struct page *vmalloc_to_page(const void *vmalloc_addr)
66048667e7aSChristoph Lameter {
66148667e7aSChristoph Lameter 	unsigned long addr = (unsigned long) vmalloc_addr;
662add688fbSmalc 	struct page *page = NULL;
66348667e7aSChristoph Lameter 	pgd_t *pgd = pgd_offset_k(addr);
664c2febafcSKirill A. Shutemov 	p4d_t *p4d;
665c2febafcSKirill A. Shutemov 	pud_t *pud;
666c2febafcSKirill A. Shutemov 	pmd_t *pmd;
667c2febafcSKirill A. Shutemov 	pte_t *ptep, pte;
66848667e7aSChristoph Lameter 
6697aa413deSIngo Molnar 	/*
6707aa413deSIngo Molnar 	 * XXX we might need to change this if we add VIRTUAL_BUG_ON for
6717aa413deSIngo Molnar 	 * architectures that do not vmalloc module space
6727aa413deSIngo Molnar 	 */
67373bdf0a6SLinus Torvalds 	VIRTUAL_BUG_ON(!is_vmalloc_or_module_addr(vmalloc_addr));
67459ea7463SJiri Slaby 
675c2febafcSKirill A. Shutemov 	if (pgd_none(*pgd))
676c2febafcSKirill A. Shutemov 		return NULL;
677c0eb315aSNicholas Piggin 	if (WARN_ON_ONCE(pgd_leaf(*pgd)))
678c0eb315aSNicholas Piggin 		return NULL; /* XXX: no allowance for huge pgd */
679c0eb315aSNicholas Piggin 	if (WARN_ON_ONCE(pgd_bad(*pgd)))
680c0eb315aSNicholas Piggin 		return NULL;
681c0eb315aSNicholas Piggin 
682c2febafcSKirill A. Shutemov 	p4d = p4d_offset(pgd, addr);
683c2febafcSKirill A. Shutemov 	if (p4d_none(*p4d))
684c2febafcSKirill A. Shutemov 		return NULL;
685c0eb315aSNicholas Piggin 	if (p4d_leaf(*p4d))
686c0eb315aSNicholas Piggin 		return p4d_page(*p4d) + ((addr & ~P4D_MASK) >> PAGE_SHIFT);
687c0eb315aSNicholas Piggin 	if (WARN_ON_ONCE(p4d_bad(*p4d)))
688c2febafcSKirill A. Shutemov 		return NULL;
689c0eb315aSNicholas Piggin 
690c0eb315aSNicholas Piggin 	pud = pud_offset(p4d, addr);
691c0eb315aSNicholas Piggin 	if (pud_none(*pud))
692c0eb315aSNicholas Piggin 		return NULL;
693c0eb315aSNicholas Piggin 	if (pud_leaf(*pud))
694c0eb315aSNicholas Piggin 		return pud_page(*pud) + ((addr & ~PUD_MASK) >> PAGE_SHIFT);
695c0eb315aSNicholas Piggin 	if (WARN_ON_ONCE(pud_bad(*pud)))
696c0eb315aSNicholas Piggin 		return NULL;
697c0eb315aSNicholas Piggin 
698c2febafcSKirill A. Shutemov 	pmd = pmd_offset(pud, addr);
699c0eb315aSNicholas Piggin 	if (pmd_none(*pmd))
700c0eb315aSNicholas Piggin 		return NULL;
701c0eb315aSNicholas Piggin 	if (pmd_leaf(*pmd))
702c0eb315aSNicholas Piggin 		return pmd_page(*pmd) + ((addr & ~PMD_MASK) >> PAGE_SHIFT);
703c0eb315aSNicholas Piggin 	if (WARN_ON_ONCE(pmd_bad(*pmd)))
704c2febafcSKirill A. Shutemov 		return NULL;
705db64fe02SNick Piggin 
70648667e7aSChristoph Lameter 	ptep = pte_offset_map(pmd, addr);
70748667e7aSChristoph Lameter 	pte = *ptep;
70848667e7aSChristoph Lameter 	if (pte_present(pte))
709add688fbSmalc 		page = pte_page(pte);
71048667e7aSChristoph Lameter 	pte_unmap(ptep);
711c0eb315aSNicholas Piggin 
712add688fbSmalc 	return page;
713ece86e22SJianyu Zhan }
714ece86e22SJianyu Zhan EXPORT_SYMBOL(vmalloc_to_page);
715ece86e22SJianyu Zhan 
716add688fbSmalc /*
717add688fbSmalc  * Map a vmalloc()-space virtual address to the physical page frame number.
718add688fbSmalc  */
719add688fbSmalc unsigned long vmalloc_to_pfn(const void *vmalloc_addr)
720add688fbSmalc {
721add688fbSmalc 	return page_to_pfn(vmalloc_to_page(vmalloc_addr));
722add688fbSmalc }
723add688fbSmalc EXPORT_SYMBOL(vmalloc_to_pfn);
724add688fbSmalc 
725db64fe02SNick Piggin 
726db64fe02SNick Piggin /*** Global kva allocator ***/
727db64fe02SNick Piggin 
728bb850f4dSUladzislau Rezki (Sony) #define DEBUG_AUGMENT_PROPAGATE_CHECK 0
729a6cf4e0fSUladzislau Rezki (Sony) #define DEBUG_AUGMENT_LOWEST_MATCH_CHECK 0
730bb850f4dSUladzislau Rezki (Sony) 
731db64fe02SNick Piggin 
732db64fe02SNick Piggin static DEFINE_SPINLOCK(vmap_area_lock);
733e36176beSUladzislau Rezki (Sony) static DEFINE_SPINLOCK(free_vmap_area_lock);
734f1c4069eSJoonsoo Kim /* Export for kexec only */
735f1c4069eSJoonsoo Kim LIST_HEAD(vmap_area_list);
73689699605SNick Piggin static struct rb_root vmap_area_root = RB_ROOT;
73768ad4a33SUladzislau Rezki (Sony) static bool vmap_initialized __read_mostly;
73889699605SNick Piggin 
73996e2db45SUladzislau Rezki (Sony) static struct rb_root purge_vmap_area_root = RB_ROOT;
74096e2db45SUladzislau Rezki (Sony) static LIST_HEAD(purge_vmap_area_list);
74196e2db45SUladzislau Rezki (Sony) static DEFINE_SPINLOCK(purge_vmap_area_lock);
74296e2db45SUladzislau Rezki (Sony) 
74368ad4a33SUladzislau Rezki (Sony) /*
74468ad4a33SUladzislau Rezki (Sony)  * This kmem_cache is used for vmap_area objects. Instead of
74568ad4a33SUladzislau Rezki (Sony)  * allocating from slab we reuse an object from this cache to
74668ad4a33SUladzislau Rezki (Sony)  * make things faster. Especially in "no edge" splitting of
74768ad4a33SUladzislau Rezki (Sony)  * free block.
74868ad4a33SUladzislau Rezki (Sony)  */
74968ad4a33SUladzislau Rezki (Sony) static struct kmem_cache *vmap_area_cachep;
75089699605SNick Piggin 
75168ad4a33SUladzislau Rezki (Sony) /*
75268ad4a33SUladzislau Rezki (Sony)  * This linked list is used in pair with free_vmap_area_root.
75368ad4a33SUladzislau Rezki (Sony)  * It gives O(1) access to prev/next to perform fast coalescing.
75468ad4a33SUladzislau Rezki (Sony)  */
75568ad4a33SUladzislau Rezki (Sony) static LIST_HEAD(free_vmap_area_list);
75668ad4a33SUladzislau Rezki (Sony) 
75768ad4a33SUladzislau Rezki (Sony) /*
75868ad4a33SUladzislau Rezki (Sony)  * This augment red-black tree represents the free vmap space.
75968ad4a33SUladzislau Rezki (Sony)  * All vmap_area objects in this tree are sorted by va->va_start
76068ad4a33SUladzislau Rezki (Sony)  * address. It is used for allocation and merging when a vmap
76168ad4a33SUladzislau Rezki (Sony)  * object is released.
76268ad4a33SUladzislau Rezki (Sony)  *
76368ad4a33SUladzislau Rezki (Sony)  * Each vmap_area node contains a maximum available free block
76468ad4a33SUladzislau Rezki (Sony)  * of its sub-tree, right or left. Therefore it is possible to
76568ad4a33SUladzislau Rezki (Sony)  * find a lowest match of free area.
76668ad4a33SUladzislau Rezki (Sony)  */
76768ad4a33SUladzislau Rezki (Sony) static struct rb_root free_vmap_area_root = RB_ROOT;
76868ad4a33SUladzislau Rezki (Sony) 
76982dd23e8SUladzislau Rezki (Sony) /*
77082dd23e8SUladzislau Rezki (Sony)  * Preload a CPU with one object for "no edge" split case. The
77182dd23e8SUladzislau Rezki (Sony)  * aim is to get rid of allocations from the atomic context, thus
77282dd23e8SUladzislau Rezki (Sony)  * to use more permissive allocation masks.
77382dd23e8SUladzislau Rezki (Sony)  */
77482dd23e8SUladzislau Rezki (Sony) static DEFINE_PER_CPU(struct vmap_area *, ne_fit_preload_node);
77582dd23e8SUladzislau Rezki (Sony) 
77668ad4a33SUladzislau Rezki (Sony) static __always_inline unsigned long
77768ad4a33SUladzislau Rezki (Sony) va_size(struct vmap_area *va)
77868ad4a33SUladzislau Rezki (Sony) {
77968ad4a33SUladzislau Rezki (Sony) 	return (va->va_end - va->va_start);
78068ad4a33SUladzislau Rezki (Sony) }
78168ad4a33SUladzislau Rezki (Sony) 
78268ad4a33SUladzislau Rezki (Sony) static __always_inline unsigned long
78368ad4a33SUladzislau Rezki (Sony) get_subtree_max_size(struct rb_node *node)
78468ad4a33SUladzislau Rezki (Sony) {
78568ad4a33SUladzislau Rezki (Sony) 	struct vmap_area *va;
78668ad4a33SUladzislau Rezki (Sony) 
78768ad4a33SUladzislau Rezki (Sony) 	va = rb_entry_safe(node, struct vmap_area, rb_node);
78868ad4a33SUladzislau Rezki (Sony) 	return va ? va->subtree_max_size : 0;
78968ad4a33SUladzislau Rezki (Sony) }
79068ad4a33SUladzislau Rezki (Sony) 
791315cc066SMichel Lespinasse RB_DECLARE_CALLBACKS_MAX(static, free_vmap_area_rb_augment_cb,
792315cc066SMichel Lespinasse 	struct vmap_area, rb_node, unsigned long, subtree_max_size, va_size)
79368ad4a33SUladzislau Rezki (Sony) 
79468ad4a33SUladzislau Rezki (Sony) static void purge_vmap_area_lazy(void);
79568ad4a33SUladzislau Rezki (Sony) static BLOCKING_NOTIFIER_HEAD(vmap_notify_list);
796690467c8SUladzislau Rezki (Sony) static void drain_vmap_area_work(struct work_struct *work);
797690467c8SUladzislau Rezki (Sony) static DECLARE_WORK(drain_vmap_work, drain_vmap_area_work);
798db64fe02SNick Piggin 
79997105f0aSRoman Gushchin static atomic_long_t nr_vmalloc_pages;
80097105f0aSRoman Gushchin 
80197105f0aSRoman Gushchin unsigned long vmalloc_nr_pages(void)
80297105f0aSRoman Gushchin {
80397105f0aSRoman Gushchin 	return atomic_long_read(&nr_vmalloc_pages);
80497105f0aSRoman Gushchin }
80597105f0aSRoman Gushchin 
806153090f2SBaoquan He /* Look up the first VA which satisfies addr < va_end, NULL if none. */
807f181234aSChen Wandun static struct vmap_area *find_vmap_area_exceed_addr(unsigned long addr)
808f181234aSChen Wandun {
809f181234aSChen Wandun 	struct vmap_area *va = NULL;
810f181234aSChen Wandun 	struct rb_node *n = vmap_area_root.rb_node;
811f181234aSChen Wandun 
8124aff1dc4SAndrey Konovalov 	addr = (unsigned long)kasan_reset_tag((void *)addr);
8134aff1dc4SAndrey Konovalov 
814f181234aSChen Wandun 	while (n) {
815f181234aSChen Wandun 		struct vmap_area *tmp;
816f181234aSChen Wandun 
817f181234aSChen Wandun 		tmp = rb_entry(n, struct vmap_area, rb_node);
818f181234aSChen Wandun 		if (tmp->va_end > addr) {
819f181234aSChen Wandun 			va = tmp;
820f181234aSChen Wandun 			if (tmp->va_start <= addr)
821f181234aSChen Wandun 				break;
822f181234aSChen Wandun 
823f181234aSChen Wandun 			n = n->rb_left;
824f181234aSChen Wandun 		} else
825f181234aSChen Wandun 			n = n->rb_right;
826f181234aSChen Wandun 	}
827f181234aSChen Wandun 
828f181234aSChen Wandun 	return va;
829f181234aSChen Wandun }
830f181234aSChen Wandun 
831899c6efeSUladzislau Rezki (Sony) static struct vmap_area *__find_vmap_area(unsigned long addr, struct rb_root *root)
8321da177e4SLinus Torvalds {
833899c6efeSUladzislau Rezki (Sony) 	struct rb_node *n = root->rb_node;
834db64fe02SNick Piggin 
8354aff1dc4SAndrey Konovalov 	addr = (unsigned long)kasan_reset_tag((void *)addr);
8364aff1dc4SAndrey Konovalov 
837db64fe02SNick Piggin 	while (n) {
838db64fe02SNick Piggin 		struct vmap_area *va;
839db64fe02SNick Piggin 
840db64fe02SNick Piggin 		va = rb_entry(n, struct vmap_area, rb_node);
841db64fe02SNick Piggin 		if (addr < va->va_start)
842db64fe02SNick Piggin 			n = n->rb_left;
843cef2ac3fSHATAYAMA Daisuke 		else if (addr >= va->va_end)
844db64fe02SNick Piggin 			n = n->rb_right;
845db64fe02SNick Piggin 		else
846db64fe02SNick Piggin 			return va;
847db64fe02SNick Piggin 	}
848db64fe02SNick Piggin 
849db64fe02SNick Piggin 	return NULL;
850db64fe02SNick Piggin }
851db64fe02SNick Piggin 
85268ad4a33SUladzislau Rezki (Sony) /*
85368ad4a33SUladzislau Rezki (Sony)  * This function returns back addresses of parent node
85468ad4a33SUladzislau Rezki (Sony)  * and its left or right link for further processing.
8559c801f61SUladzislau Rezki (Sony)  *
8569c801f61SUladzislau Rezki (Sony)  * Otherwise NULL is returned. In that case all further
8579c801f61SUladzislau Rezki (Sony)  * steps regarding inserting of conflicting overlap range
8589c801f61SUladzislau Rezki (Sony)  * have to be declined and actually considered as a bug.
85968ad4a33SUladzislau Rezki (Sony)  */
86068ad4a33SUladzislau Rezki (Sony) static __always_inline struct rb_node **
86168ad4a33SUladzislau Rezki (Sony) find_va_links(struct vmap_area *va,
86268ad4a33SUladzislau Rezki (Sony) 	struct rb_root *root, struct rb_node *from,
86368ad4a33SUladzislau Rezki (Sony) 	struct rb_node **parent)
864db64fe02SNick Piggin {
865170168d0SNamhyung Kim 	struct vmap_area *tmp_va;
86668ad4a33SUladzislau Rezki (Sony) 	struct rb_node **link;
867db64fe02SNick Piggin 
86868ad4a33SUladzislau Rezki (Sony) 	if (root) {
86968ad4a33SUladzislau Rezki (Sony) 		link = &root->rb_node;
87068ad4a33SUladzislau Rezki (Sony) 		if (unlikely(!*link)) {
87168ad4a33SUladzislau Rezki (Sony) 			*parent = NULL;
87268ad4a33SUladzislau Rezki (Sony) 			return link;
87368ad4a33SUladzislau Rezki (Sony) 		}
87468ad4a33SUladzislau Rezki (Sony) 	} else {
87568ad4a33SUladzislau Rezki (Sony) 		link = &from;
87668ad4a33SUladzislau Rezki (Sony) 	}
87768ad4a33SUladzislau Rezki (Sony) 
87868ad4a33SUladzislau Rezki (Sony) 	/*
87968ad4a33SUladzislau Rezki (Sony) 	 * Go to the bottom of the tree. When we hit the last point
88068ad4a33SUladzislau Rezki (Sony) 	 * we end up with parent rb_node and correct direction, i name
88168ad4a33SUladzislau Rezki (Sony) 	 * it link, where the new va->rb_node will be attached to.
88268ad4a33SUladzislau Rezki (Sony) 	 */
88368ad4a33SUladzislau Rezki (Sony) 	do {
88468ad4a33SUladzislau Rezki (Sony) 		tmp_va = rb_entry(*link, struct vmap_area, rb_node);
88568ad4a33SUladzislau Rezki (Sony) 
88668ad4a33SUladzislau Rezki (Sony) 		/*
88768ad4a33SUladzislau Rezki (Sony) 		 * During the traversal we also do some sanity check.
88868ad4a33SUladzislau Rezki (Sony) 		 * Trigger the BUG() if there are sides(left/right)
88968ad4a33SUladzislau Rezki (Sony) 		 * or full overlaps.
89068ad4a33SUladzislau Rezki (Sony) 		 */
891753df96bSBaoquan He 		if (va->va_end <= tmp_va->va_start)
89268ad4a33SUladzislau Rezki (Sony) 			link = &(*link)->rb_left;
893753df96bSBaoquan He 		else if (va->va_start >= tmp_va->va_end)
89468ad4a33SUladzislau Rezki (Sony) 			link = &(*link)->rb_right;
8959c801f61SUladzislau Rezki (Sony) 		else {
8969c801f61SUladzislau Rezki (Sony) 			WARN(1, "vmalloc bug: 0x%lx-0x%lx overlaps with 0x%lx-0x%lx\n",
8979c801f61SUladzislau Rezki (Sony) 				va->va_start, va->va_end, tmp_va->va_start, tmp_va->va_end);
8989c801f61SUladzislau Rezki (Sony) 
8999c801f61SUladzislau Rezki (Sony) 			return NULL;
9009c801f61SUladzislau Rezki (Sony) 		}
90168ad4a33SUladzislau Rezki (Sony) 	} while (*link);
90268ad4a33SUladzislau Rezki (Sony) 
90368ad4a33SUladzislau Rezki (Sony) 	*parent = &tmp_va->rb_node;
90468ad4a33SUladzislau Rezki (Sony) 	return link;
905db64fe02SNick Piggin }
906db64fe02SNick Piggin 
90768ad4a33SUladzislau Rezki (Sony) static __always_inline struct list_head *
90868ad4a33SUladzislau Rezki (Sony) get_va_next_sibling(struct rb_node *parent, struct rb_node **link)
90968ad4a33SUladzislau Rezki (Sony) {
91068ad4a33SUladzislau Rezki (Sony) 	struct list_head *list;
911db64fe02SNick Piggin 
91268ad4a33SUladzislau Rezki (Sony) 	if (unlikely(!parent))
91368ad4a33SUladzislau Rezki (Sony) 		/*
91468ad4a33SUladzislau Rezki (Sony) 		 * The red-black tree where we try to find VA neighbors
91568ad4a33SUladzislau Rezki (Sony) 		 * before merging or inserting is empty, i.e. it means
91668ad4a33SUladzislau Rezki (Sony) 		 * there is no free vmap space. Normally it does not
91768ad4a33SUladzislau Rezki (Sony) 		 * happen but we handle this case anyway.
91868ad4a33SUladzislau Rezki (Sony) 		 */
91968ad4a33SUladzislau Rezki (Sony) 		return NULL;
92068ad4a33SUladzislau Rezki (Sony) 
92168ad4a33SUladzislau Rezki (Sony) 	list = &rb_entry(parent, struct vmap_area, rb_node)->list;
92268ad4a33SUladzislau Rezki (Sony) 	return (&parent->rb_right == link ? list->next : list);
923db64fe02SNick Piggin }
924db64fe02SNick Piggin 
92568ad4a33SUladzislau Rezki (Sony) static __always_inline void
9268eb510dbSUladzislau Rezki (Sony) __link_va(struct vmap_area *va, struct rb_root *root,
9278eb510dbSUladzislau Rezki (Sony) 	struct rb_node *parent, struct rb_node **link,
9288eb510dbSUladzislau Rezki (Sony) 	struct list_head *head, bool augment)
92968ad4a33SUladzislau Rezki (Sony) {
93068ad4a33SUladzislau Rezki (Sony) 	/*
93168ad4a33SUladzislau Rezki (Sony) 	 * VA is still not in the list, but we can
93268ad4a33SUladzislau Rezki (Sony) 	 * identify its future previous list_head node.
93368ad4a33SUladzislau Rezki (Sony) 	 */
93468ad4a33SUladzislau Rezki (Sony) 	if (likely(parent)) {
93568ad4a33SUladzislau Rezki (Sony) 		head = &rb_entry(parent, struct vmap_area, rb_node)->list;
93668ad4a33SUladzislau Rezki (Sony) 		if (&parent->rb_right != link)
93768ad4a33SUladzislau Rezki (Sony) 			head = head->prev;
93868ad4a33SUladzislau Rezki (Sony) 	}
939db64fe02SNick Piggin 
94068ad4a33SUladzislau Rezki (Sony) 	/* Insert to the rb-tree */
94168ad4a33SUladzislau Rezki (Sony) 	rb_link_node(&va->rb_node, parent, link);
9428eb510dbSUladzislau Rezki (Sony) 	if (augment) {
94368ad4a33SUladzislau Rezki (Sony) 		/*
94468ad4a33SUladzislau Rezki (Sony) 		 * Some explanation here. Just perform simple insertion
94568ad4a33SUladzislau Rezki (Sony) 		 * to the tree. We do not set va->subtree_max_size to
94668ad4a33SUladzislau Rezki (Sony) 		 * its current size before calling rb_insert_augmented().
947153090f2SBaoquan He 		 * It is because we populate the tree from the bottom
94868ad4a33SUladzislau Rezki (Sony) 		 * to parent levels when the node _is_ in the tree.
94968ad4a33SUladzislau Rezki (Sony) 		 *
95068ad4a33SUladzislau Rezki (Sony) 		 * Therefore we set subtree_max_size to zero after insertion,
95168ad4a33SUladzislau Rezki (Sony) 		 * to let __augment_tree_propagate_from() puts everything to
95268ad4a33SUladzislau Rezki (Sony) 		 * the correct order later on.
95368ad4a33SUladzislau Rezki (Sony) 		 */
95468ad4a33SUladzislau Rezki (Sony) 		rb_insert_augmented(&va->rb_node,
95568ad4a33SUladzislau Rezki (Sony) 			root, &free_vmap_area_rb_augment_cb);
95668ad4a33SUladzislau Rezki (Sony) 		va->subtree_max_size = 0;
95768ad4a33SUladzislau Rezki (Sony) 	} else {
95868ad4a33SUladzislau Rezki (Sony) 		rb_insert_color(&va->rb_node, root);
95968ad4a33SUladzislau Rezki (Sony) 	}
96068ad4a33SUladzislau Rezki (Sony) 
96168ad4a33SUladzislau Rezki (Sony) 	/* Address-sort this list */
96268ad4a33SUladzislau Rezki (Sony) 	list_add(&va->list, head);
96368ad4a33SUladzislau Rezki (Sony) }
96468ad4a33SUladzislau Rezki (Sony) 
96568ad4a33SUladzislau Rezki (Sony) static __always_inline void
9668eb510dbSUladzislau Rezki (Sony) link_va(struct vmap_area *va, struct rb_root *root,
9678eb510dbSUladzislau Rezki (Sony) 	struct rb_node *parent, struct rb_node **link,
9688eb510dbSUladzislau Rezki (Sony) 	struct list_head *head)
9698eb510dbSUladzislau Rezki (Sony) {
9708eb510dbSUladzislau Rezki (Sony) 	__link_va(va, root, parent, link, head, false);
9718eb510dbSUladzislau Rezki (Sony) }
9728eb510dbSUladzislau Rezki (Sony) 
9738eb510dbSUladzislau Rezki (Sony) static __always_inline void
9748eb510dbSUladzislau Rezki (Sony) link_va_augment(struct vmap_area *va, struct rb_root *root,
9758eb510dbSUladzislau Rezki (Sony) 	struct rb_node *parent, struct rb_node **link,
9768eb510dbSUladzislau Rezki (Sony) 	struct list_head *head)
9778eb510dbSUladzislau Rezki (Sony) {
9788eb510dbSUladzislau Rezki (Sony) 	__link_va(va, root, parent, link, head, true);
9798eb510dbSUladzislau Rezki (Sony) }
9808eb510dbSUladzislau Rezki (Sony) 
9818eb510dbSUladzislau Rezki (Sony) static __always_inline void
9828eb510dbSUladzislau Rezki (Sony) __unlink_va(struct vmap_area *va, struct rb_root *root, bool augment)
98368ad4a33SUladzislau Rezki (Sony) {
984460e42d1SUladzislau Rezki (Sony) 	if (WARN_ON(RB_EMPTY_NODE(&va->rb_node)))
985460e42d1SUladzislau Rezki (Sony) 		return;
986460e42d1SUladzislau Rezki (Sony) 
9878eb510dbSUladzislau Rezki (Sony) 	if (augment)
98868ad4a33SUladzislau Rezki (Sony) 		rb_erase_augmented(&va->rb_node,
98968ad4a33SUladzislau Rezki (Sony) 			root, &free_vmap_area_rb_augment_cb);
99068ad4a33SUladzislau Rezki (Sony) 	else
99168ad4a33SUladzislau Rezki (Sony) 		rb_erase(&va->rb_node, root);
99268ad4a33SUladzislau Rezki (Sony) 
9935d7a7c54SUladzislau Rezki (Sony) 	list_del_init(&va->list);
99468ad4a33SUladzislau Rezki (Sony) 	RB_CLEAR_NODE(&va->rb_node);
99568ad4a33SUladzislau Rezki (Sony) }
99668ad4a33SUladzislau Rezki (Sony) 
9978eb510dbSUladzislau Rezki (Sony) static __always_inline void
9988eb510dbSUladzislau Rezki (Sony) unlink_va(struct vmap_area *va, struct rb_root *root)
9998eb510dbSUladzislau Rezki (Sony) {
10008eb510dbSUladzislau Rezki (Sony) 	__unlink_va(va, root, false);
10018eb510dbSUladzislau Rezki (Sony) }
10028eb510dbSUladzislau Rezki (Sony) 
10038eb510dbSUladzislau Rezki (Sony) static __always_inline void
10048eb510dbSUladzislau Rezki (Sony) unlink_va_augment(struct vmap_area *va, struct rb_root *root)
10058eb510dbSUladzislau Rezki (Sony) {
10068eb510dbSUladzislau Rezki (Sony) 	__unlink_va(va, root, true);
10078eb510dbSUladzislau Rezki (Sony) }
10088eb510dbSUladzislau Rezki (Sony) 
1009bb850f4dSUladzislau Rezki (Sony) #if DEBUG_AUGMENT_PROPAGATE_CHECK
1010c3385e84SJiapeng Chong /*
1011c3385e84SJiapeng Chong  * Gets called when remove the node and rotate.
1012c3385e84SJiapeng Chong  */
1013c3385e84SJiapeng Chong static __always_inline unsigned long
1014c3385e84SJiapeng Chong compute_subtree_max_size(struct vmap_area *va)
1015c3385e84SJiapeng Chong {
1016c3385e84SJiapeng Chong 	return max3(va_size(va),
1017c3385e84SJiapeng Chong 		get_subtree_max_size(va->rb_node.rb_left),
1018c3385e84SJiapeng Chong 		get_subtree_max_size(va->rb_node.rb_right));
1019c3385e84SJiapeng Chong }
1020c3385e84SJiapeng Chong 
1021bb850f4dSUladzislau Rezki (Sony) static void
1022da27c9edSUladzislau Rezki (Sony) augment_tree_propagate_check(void)
1023bb850f4dSUladzislau Rezki (Sony) {
1024bb850f4dSUladzislau Rezki (Sony) 	struct vmap_area *va;
1025da27c9edSUladzislau Rezki (Sony) 	unsigned long computed_size;
1026bb850f4dSUladzislau Rezki (Sony) 
1027da27c9edSUladzislau Rezki (Sony) 	list_for_each_entry(va, &free_vmap_area_list, list) {
1028da27c9edSUladzislau Rezki (Sony) 		computed_size = compute_subtree_max_size(va);
1029da27c9edSUladzislau Rezki (Sony) 		if (computed_size != va->subtree_max_size)
1030bb850f4dSUladzislau Rezki (Sony) 			pr_emerg("tree is corrupted: %lu, %lu\n",
1031bb850f4dSUladzislau Rezki (Sony) 				va_size(va), va->subtree_max_size);
1032bb850f4dSUladzislau Rezki (Sony) 	}
1033bb850f4dSUladzislau Rezki (Sony) }
1034bb850f4dSUladzislau Rezki (Sony) #endif
1035bb850f4dSUladzislau Rezki (Sony) 
103668ad4a33SUladzislau Rezki (Sony) /*
103768ad4a33SUladzislau Rezki (Sony)  * This function populates subtree_max_size from bottom to upper
103868ad4a33SUladzislau Rezki (Sony)  * levels starting from VA point. The propagation must be done
103968ad4a33SUladzislau Rezki (Sony)  * when VA size is modified by changing its va_start/va_end. Or
104068ad4a33SUladzislau Rezki (Sony)  * in case of newly inserting of VA to the tree.
104168ad4a33SUladzislau Rezki (Sony)  *
104268ad4a33SUladzislau Rezki (Sony)  * It means that __augment_tree_propagate_from() must be called:
104368ad4a33SUladzislau Rezki (Sony)  * - After VA has been inserted to the tree(free path);
104468ad4a33SUladzislau Rezki (Sony)  * - After VA has been shrunk(allocation path);
104568ad4a33SUladzislau Rezki (Sony)  * - After VA has been increased(merging path).
104668ad4a33SUladzislau Rezki (Sony)  *
104768ad4a33SUladzislau Rezki (Sony)  * Please note that, it does not mean that upper parent nodes
104868ad4a33SUladzislau Rezki (Sony)  * and their subtree_max_size are recalculated all the time up
104968ad4a33SUladzislau Rezki (Sony)  * to the root node.
105068ad4a33SUladzislau Rezki (Sony)  *
105168ad4a33SUladzislau Rezki (Sony)  *       4--8
105268ad4a33SUladzislau Rezki (Sony)  *        /\
105368ad4a33SUladzislau Rezki (Sony)  *       /  \
105468ad4a33SUladzislau Rezki (Sony)  *      /    \
105568ad4a33SUladzislau Rezki (Sony)  *    2--2  8--8
105668ad4a33SUladzislau Rezki (Sony)  *
105768ad4a33SUladzislau Rezki (Sony)  * For example if we modify the node 4, shrinking it to 2, then
105868ad4a33SUladzislau Rezki (Sony)  * no any modification is required. If we shrink the node 2 to 1
105968ad4a33SUladzislau Rezki (Sony)  * its subtree_max_size is updated only, and set to 1. If we shrink
106068ad4a33SUladzislau Rezki (Sony)  * the node 8 to 6, then its subtree_max_size is set to 6 and parent
106168ad4a33SUladzislau Rezki (Sony)  * node becomes 4--6.
106268ad4a33SUladzislau Rezki (Sony)  */
106368ad4a33SUladzislau Rezki (Sony) static __always_inline void
106468ad4a33SUladzislau Rezki (Sony) augment_tree_propagate_from(struct vmap_area *va)
106568ad4a33SUladzislau Rezki (Sony) {
106668ad4a33SUladzislau Rezki (Sony) 	/*
106715ae144fSUladzislau Rezki (Sony) 	 * Populate the tree from bottom towards the root until
106815ae144fSUladzislau Rezki (Sony) 	 * the calculated maximum available size of checked node
106915ae144fSUladzislau Rezki (Sony) 	 * is equal to its current one.
107068ad4a33SUladzislau Rezki (Sony) 	 */
107115ae144fSUladzislau Rezki (Sony) 	free_vmap_area_rb_augment_cb_propagate(&va->rb_node, NULL);
1072bb850f4dSUladzislau Rezki (Sony) 
1073bb850f4dSUladzislau Rezki (Sony) #if DEBUG_AUGMENT_PROPAGATE_CHECK
1074da27c9edSUladzislau Rezki (Sony) 	augment_tree_propagate_check();
1075bb850f4dSUladzislau Rezki (Sony) #endif
107668ad4a33SUladzislau Rezki (Sony) }
107768ad4a33SUladzislau Rezki (Sony) 
107868ad4a33SUladzislau Rezki (Sony) static void
107968ad4a33SUladzislau Rezki (Sony) insert_vmap_area(struct vmap_area *va,
108068ad4a33SUladzislau Rezki (Sony) 	struct rb_root *root, struct list_head *head)
108168ad4a33SUladzislau Rezki (Sony) {
108268ad4a33SUladzislau Rezki (Sony) 	struct rb_node **link;
108368ad4a33SUladzislau Rezki (Sony) 	struct rb_node *parent;
108468ad4a33SUladzislau Rezki (Sony) 
108568ad4a33SUladzislau Rezki (Sony) 	link = find_va_links(va, root, NULL, &parent);
10869c801f61SUladzislau Rezki (Sony) 	if (link)
108768ad4a33SUladzislau Rezki (Sony) 		link_va(va, root, parent, link, head);
108868ad4a33SUladzislau Rezki (Sony) }
108968ad4a33SUladzislau Rezki (Sony) 
109068ad4a33SUladzislau Rezki (Sony) static void
109168ad4a33SUladzislau Rezki (Sony) insert_vmap_area_augment(struct vmap_area *va,
109268ad4a33SUladzislau Rezki (Sony) 	struct rb_node *from, struct rb_root *root,
109368ad4a33SUladzislau Rezki (Sony) 	struct list_head *head)
109468ad4a33SUladzislau Rezki (Sony) {
109568ad4a33SUladzislau Rezki (Sony) 	struct rb_node **link;
109668ad4a33SUladzislau Rezki (Sony) 	struct rb_node *parent;
109768ad4a33SUladzislau Rezki (Sony) 
109868ad4a33SUladzislau Rezki (Sony) 	if (from)
109968ad4a33SUladzislau Rezki (Sony) 		link = find_va_links(va, NULL, from, &parent);
110068ad4a33SUladzislau Rezki (Sony) 	else
110168ad4a33SUladzislau Rezki (Sony) 		link = find_va_links(va, root, NULL, &parent);
110268ad4a33SUladzislau Rezki (Sony) 
11039c801f61SUladzislau Rezki (Sony) 	if (link) {
11048eb510dbSUladzislau Rezki (Sony) 		link_va_augment(va, root, parent, link, head);
110568ad4a33SUladzislau Rezki (Sony) 		augment_tree_propagate_from(va);
110668ad4a33SUladzislau Rezki (Sony) 	}
11079c801f61SUladzislau Rezki (Sony) }
110868ad4a33SUladzislau Rezki (Sony) 
110968ad4a33SUladzislau Rezki (Sony) /*
111068ad4a33SUladzislau Rezki (Sony)  * Merge de-allocated chunk of VA memory with previous
111168ad4a33SUladzislau Rezki (Sony)  * and next free blocks. If coalesce is not done a new
111268ad4a33SUladzislau Rezki (Sony)  * free area is inserted. If VA has been merged, it is
111368ad4a33SUladzislau Rezki (Sony)  * freed.
11149c801f61SUladzislau Rezki (Sony)  *
11159c801f61SUladzislau Rezki (Sony)  * Please note, it can return NULL in case of overlap
11169c801f61SUladzislau Rezki (Sony)  * ranges, followed by WARN() report. Despite it is a
11179c801f61SUladzislau Rezki (Sony)  * buggy behaviour, a system can be alive and keep
11189c801f61SUladzislau Rezki (Sony)  * ongoing.
111968ad4a33SUladzislau Rezki (Sony)  */
11203c5c3cfbSDaniel Axtens static __always_inline struct vmap_area *
11218eb510dbSUladzislau Rezki (Sony) __merge_or_add_vmap_area(struct vmap_area *va,
11228eb510dbSUladzislau Rezki (Sony) 	struct rb_root *root, struct list_head *head, bool augment)
112368ad4a33SUladzislau Rezki (Sony) {
112468ad4a33SUladzislau Rezki (Sony) 	struct vmap_area *sibling;
112568ad4a33SUladzislau Rezki (Sony) 	struct list_head *next;
112668ad4a33SUladzislau Rezki (Sony) 	struct rb_node **link;
112768ad4a33SUladzislau Rezki (Sony) 	struct rb_node *parent;
112868ad4a33SUladzislau Rezki (Sony) 	bool merged = false;
112968ad4a33SUladzislau Rezki (Sony) 
113068ad4a33SUladzislau Rezki (Sony) 	/*
113168ad4a33SUladzislau Rezki (Sony) 	 * Find a place in the tree where VA potentially will be
113268ad4a33SUladzislau Rezki (Sony) 	 * inserted, unless it is merged with its sibling/siblings.
113368ad4a33SUladzislau Rezki (Sony) 	 */
113468ad4a33SUladzislau Rezki (Sony) 	link = find_va_links(va, root, NULL, &parent);
11359c801f61SUladzislau Rezki (Sony) 	if (!link)
11369c801f61SUladzislau Rezki (Sony) 		return NULL;
113768ad4a33SUladzislau Rezki (Sony) 
113868ad4a33SUladzislau Rezki (Sony) 	/*
113968ad4a33SUladzislau Rezki (Sony) 	 * Get next node of VA to check if merging can be done.
114068ad4a33SUladzislau Rezki (Sony) 	 */
114168ad4a33SUladzislau Rezki (Sony) 	next = get_va_next_sibling(parent, link);
114268ad4a33SUladzislau Rezki (Sony) 	if (unlikely(next == NULL))
114368ad4a33SUladzislau Rezki (Sony) 		goto insert;
114468ad4a33SUladzislau Rezki (Sony) 
114568ad4a33SUladzislau Rezki (Sony) 	/*
114668ad4a33SUladzislau Rezki (Sony) 	 * start            end
114768ad4a33SUladzislau Rezki (Sony) 	 * |                |
114868ad4a33SUladzislau Rezki (Sony) 	 * |<------VA------>|<-----Next----->|
114968ad4a33SUladzislau Rezki (Sony) 	 *                  |                |
115068ad4a33SUladzislau Rezki (Sony) 	 *                  start            end
115168ad4a33SUladzislau Rezki (Sony) 	 */
115268ad4a33SUladzislau Rezki (Sony) 	if (next != head) {
115368ad4a33SUladzislau Rezki (Sony) 		sibling = list_entry(next, struct vmap_area, list);
115468ad4a33SUladzislau Rezki (Sony) 		if (sibling->va_start == va->va_end) {
115568ad4a33SUladzislau Rezki (Sony) 			sibling->va_start = va->va_start;
115668ad4a33SUladzislau Rezki (Sony) 
115768ad4a33SUladzislau Rezki (Sony) 			/* Free vmap_area object. */
115868ad4a33SUladzislau Rezki (Sony) 			kmem_cache_free(vmap_area_cachep, va);
115968ad4a33SUladzislau Rezki (Sony) 
116068ad4a33SUladzislau Rezki (Sony) 			/* Point to the new merged area. */
116168ad4a33SUladzislau Rezki (Sony) 			va = sibling;
116268ad4a33SUladzislau Rezki (Sony) 			merged = true;
116368ad4a33SUladzislau Rezki (Sony) 		}
116468ad4a33SUladzislau Rezki (Sony) 	}
116568ad4a33SUladzislau Rezki (Sony) 
116668ad4a33SUladzislau Rezki (Sony) 	/*
116768ad4a33SUladzislau Rezki (Sony) 	 * start            end
116868ad4a33SUladzislau Rezki (Sony) 	 * |                |
116968ad4a33SUladzislau Rezki (Sony) 	 * |<-----Prev----->|<------VA------>|
117068ad4a33SUladzislau Rezki (Sony) 	 *                  |                |
117168ad4a33SUladzislau Rezki (Sony) 	 *                  start            end
117268ad4a33SUladzislau Rezki (Sony) 	 */
117368ad4a33SUladzislau Rezki (Sony) 	if (next->prev != head) {
117468ad4a33SUladzislau Rezki (Sony) 		sibling = list_entry(next->prev, struct vmap_area, list);
117568ad4a33SUladzislau Rezki (Sony) 		if (sibling->va_end == va->va_start) {
11765dd78640SUladzislau Rezki (Sony) 			/*
11775dd78640SUladzislau Rezki (Sony) 			 * If both neighbors are coalesced, it is important
11785dd78640SUladzislau Rezki (Sony) 			 * to unlink the "next" node first, followed by merging
11795dd78640SUladzislau Rezki (Sony) 			 * with "previous" one. Otherwise the tree might not be
11805dd78640SUladzislau Rezki (Sony) 			 * fully populated if a sibling's augmented value is
11815dd78640SUladzislau Rezki (Sony) 			 * "normalized" because of rotation operations.
11825dd78640SUladzislau Rezki (Sony) 			 */
118354f63d9dSUladzislau Rezki (Sony) 			if (merged)
11848eb510dbSUladzislau Rezki (Sony) 				__unlink_va(va, root, augment);
118568ad4a33SUladzislau Rezki (Sony) 
11865dd78640SUladzislau Rezki (Sony) 			sibling->va_end = va->va_end;
11875dd78640SUladzislau Rezki (Sony) 
118868ad4a33SUladzislau Rezki (Sony) 			/* Free vmap_area object. */
118968ad4a33SUladzislau Rezki (Sony) 			kmem_cache_free(vmap_area_cachep, va);
11903c5c3cfbSDaniel Axtens 
11913c5c3cfbSDaniel Axtens 			/* Point to the new merged area. */
11923c5c3cfbSDaniel Axtens 			va = sibling;
11933c5c3cfbSDaniel Axtens 			merged = true;
119468ad4a33SUladzislau Rezki (Sony) 		}
119568ad4a33SUladzislau Rezki (Sony) 	}
119668ad4a33SUladzislau Rezki (Sony) 
119768ad4a33SUladzislau Rezki (Sony) insert:
11985dd78640SUladzislau Rezki (Sony) 	if (!merged)
11998eb510dbSUladzislau Rezki (Sony) 		__link_va(va, root, parent, link, head, augment);
12003c5c3cfbSDaniel Axtens 
120196e2db45SUladzislau Rezki (Sony) 	return va;
120296e2db45SUladzislau Rezki (Sony) }
120396e2db45SUladzislau Rezki (Sony) 
120496e2db45SUladzislau Rezki (Sony) static __always_inline struct vmap_area *
12058eb510dbSUladzislau Rezki (Sony) merge_or_add_vmap_area(struct vmap_area *va,
12068eb510dbSUladzislau Rezki (Sony) 	struct rb_root *root, struct list_head *head)
12078eb510dbSUladzislau Rezki (Sony) {
12088eb510dbSUladzislau Rezki (Sony) 	return __merge_or_add_vmap_area(va, root, head, false);
12098eb510dbSUladzislau Rezki (Sony) }
12108eb510dbSUladzislau Rezki (Sony) 
12118eb510dbSUladzislau Rezki (Sony) static __always_inline struct vmap_area *
121296e2db45SUladzislau Rezki (Sony) merge_or_add_vmap_area_augment(struct vmap_area *va,
121396e2db45SUladzislau Rezki (Sony) 	struct rb_root *root, struct list_head *head)
121496e2db45SUladzislau Rezki (Sony) {
12158eb510dbSUladzislau Rezki (Sony) 	va = __merge_or_add_vmap_area(va, root, head, true);
121696e2db45SUladzislau Rezki (Sony) 	if (va)
12175dd78640SUladzislau Rezki (Sony) 		augment_tree_propagate_from(va);
121896e2db45SUladzislau Rezki (Sony) 
12193c5c3cfbSDaniel Axtens 	return va;
122068ad4a33SUladzislau Rezki (Sony) }
122168ad4a33SUladzislau Rezki (Sony) 
122268ad4a33SUladzislau Rezki (Sony) static __always_inline bool
122368ad4a33SUladzislau Rezki (Sony) is_within_this_va(struct vmap_area *va, unsigned long size,
122468ad4a33SUladzislau Rezki (Sony) 	unsigned long align, unsigned long vstart)
122568ad4a33SUladzislau Rezki (Sony) {
122668ad4a33SUladzislau Rezki (Sony) 	unsigned long nva_start_addr;
122768ad4a33SUladzislau Rezki (Sony) 
122868ad4a33SUladzislau Rezki (Sony) 	if (va->va_start > vstart)
122968ad4a33SUladzislau Rezki (Sony) 		nva_start_addr = ALIGN(va->va_start, align);
123068ad4a33SUladzislau Rezki (Sony) 	else
123168ad4a33SUladzislau Rezki (Sony) 		nva_start_addr = ALIGN(vstart, align);
123268ad4a33SUladzislau Rezki (Sony) 
123368ad4a33SUladzislau Rezki (Sony) 	/* Can be overflowed due to big size or alignment. */
123468ad4a33SUladzislau Rezki (Sony) 	if (nva_start_addr + size < nva_start_addr ||
123568ad4a33SUladzislau Rezki (Sony) 			nva_start_addr < vstart)
123668ad4a33SUladzislau Rezki (Sony) 		return false;
123768ad4a33SUladzislau Rezki (Sony) 
123868ad4a33SUladzislau Rezki (Sony) 	return (nva_start_addr + size <= va->va_end);
123968ad4a33SUladzislau Rezki (Sony) }
124068ad4a33SUladzislau Rezki (Sony) 
124168ad4a33SUladzislau Rezki (Sony) /*
124268ad4a33SUladzislau Rezki (Sony)  * Find the first free block(lowest start address) in the tree,
124368ad4a33SUladzislau Rezki (Sony)  * that will accomplish the request corresponding to passing
12449333fe98SUladzislau Rezki  * parameters. Please note, with an alignment bigger than PAGE_SIZE,
12459333fe98SUladzislau Rezki  * a search length is adjusted to account for worst case alignment
12469333fe98SUladzislau Rezki  * overhead.
124768ad4a33SUladzislau Rezki (Sony)  */
124868ad4a33SUladzislau Rezki (Sony) static __always_inline struct vmap_area *
1249f9863be4SUladzislau Rezki (Sony) find_vmap_lowest_match(struct rb_root *root, unsigned long size,
1250f9863be4SUladzislau Rezki (Sony) 	unsigned long align, unsigned long vstart, bool adjust_search_size)
125168ad4a33SUladzislau Rezki (Sony) {
125268ad4a33SUladzislau Rezki (Sony) 	struct vmap_area *va;
125368ad4a33SUladzislau Rezki (Sony) 	struct rb_node *node;
12549333fe98SUladzislau Rezki 	unsigned long length;
125568ad4a33SUladzislau Rezki (Sony) 
125668ad4a33SUladzislau Rezki (Sony) 	/* Start from the root. */
1257f9863be4SUladzislau Rezki (Sony) 	node = root->rb_node;
125868ad4a33SUladzislau Rezki (Sony) 
12599333fe98SUladzislau Rezki 	/* Adjust the search size for alignment overhead. */
12609333fe98SUladzislau Rezki 	length = adjust_search_size ? size + align - 1 : size;
12619333fe98SUladzislau Rezki 
126268ad4a33SUladzislau Rezki (Sony) 	while (node) {
126368ad4a33SUladzislau Rezki (Sony) 		va = rb_entry(node, struct vmap_area, rb_node);
126468ad4a33SUladzislau Rezki (Sony) 
12659333fe98SUladzislau Rezki 		if (get_subtree_max_size(node->rb_left) >= length &&
126668ad4a33SUladzislau Rezki (Sony) 				vstart < va->va_start) {
126768ad4a33SUladzislau Rezki (Sony) 			node = node->rb_left;
126868ad4a33SUladzislau Rezki (Sony) 		} else {
126968ad4a33SUladzislau Rezki (Sony) 			if (is_within_this_va(va, size, align, vstart))
127068ad4a33SUladzislau Rezki (Sony) 				return va;
127168ad4a33SUladzislau Rezki (Sony) 
127268ad4a33SUladzislau Rezki (Sony) 			/*
127368ad4a33SUladzislau Rezki (Sony) 			 * Does not make sense to go deeper towards the right
127468ad4a33SUladzislau Rezki (Sony) 			 * sub-tree if it does not have a free block that is
12759333fe98SUladzislau Rezki 			 * equal or bigger to the requested search length.
127668ad4a33SUladzislau Rezki (Sony) 			 */
12779333fe98SUladzislau Rezki 			if (get_subtree_max_size(node->rb_right) >= length) {
127868ad4a33SUladzislau Rezki (Sony) 				node = node->rb_right;
127968ad4a33SUladzislau Rezki (Sony) 				continue;
128068ad4a33SUladzislau Rezki (Sony) 			}
128168ad4a33SUladzislau Rezki (Sony) 
128268ad4a33SUladzislau Rezki (Sony) 			/*
12833806b041SAndrew Morton 			 * OK. We roll back and find the first right sub-tree,
128468ad4a33SUladzislau Rezki (Sony) 			 * that will satisfy the search criteria. It can happen
12859f531973SUladzislau Rezki (Sony) 			 * due to "vstart" restriction or an alignment overhead
12869f531973SUladzislau Rezki (Sony) 			 * that is bigger then PAGE_SIZE.
128768ad4a33SUladzislau Rezki (Sony) 			 */
128868ad4a33SUladzislau Rezki (Sony) 			while ((node = rb_parent(node))) {
128968ad4a33SUladzislau Rezki (Sony) 				va = rb_entry(node, struct vmap_area, rb_node);
129068ad4a33SUladzislau Rezki (Sony) 				if (is_within_this_va(va, size, align, vstart))
129168ad4a33SUladzislau Rezki (Sony) 					return va;
129268ad4a33SUladzislau Rezki (Sony) 
12939333fe98SUladzislau Rezki 				if (get_subtree_max_size(node->rb_right) >= length &&
129468ad4a33SUladzislau Rezki (Sony) 						vstart <= va->va_start) {
12959f531973SUladzislau Rezki (Sony) 					/*
12969f531973SUladzislau Rezki (Sony) 					 * Shift the vstart forward. Please note, we update it with
12979f531973SUladzislau Rezki (Sony) 					 * parent's start address adding "1" because we do not want
12989f531973SUladzislau Rezki (Sony) 					 * to enter same sub-tree after it has already been checked
12999f531973SUladzislau Rezki (Sony) 					 * and no suitable free block found there.
13009f531973SUladzislau Rezki (Sony) 					 */
13019f531973SUladzislau Rezki (Sony) 					vstart = va->va_start + 1;
130268ad4a33SUladzislau Rezki (Sony) 					node = node->rb_right;
130368ad4a33SUladzislau Rezki (Sony) 					break;
130468ad4a33SUladzislau Rezki (Sony) 				}
130568ad4a33SUladzislau Rezki (Sony) 			}
130668ad4a33SUladzislau Rezki (Sony) 		}
130768ad4a33SUladzislau Rezki (Sony) 	}
130868ad4a33SUladzislau Rezki (Sony) 
130968ad4a33SUladzislau Rezki (Sony) 	return NULL;
131068ad4a33SUladzislau Rezki (Sony) }
131168ad4a33SUladzislau Rezki (Sony) 
1312a6cf4e0fSUladzislau Rezki (Sony) #if DEBUG_AUGMENT_LOWEST_MATCH_CHECK
1313a6cf4e0fSUladzislau Rezki (Sony) #include <linux/random.h>
1314a6cf4e0fSUladzislau Rezki (Sony) 
1315a6cf4e0fSUladzislau Rezki (Sony) static struct vmap_area *
1316bd1264c3SSong Liu find_vmap_lowest_linear_match(struct list_head *head, unsigned long size,
1317a6cf4e0fSUladzislau Rezki (Sony) 	unsigned long align, unsigned long vstart)
1318a6cf4e0fSUladzislau Rezki (Sony) {
1319a6cf4e0fSUladzislau Rezki (Sony) 	struct vmap_area *va;
1320a6cf4e0fSUladzislau Rezki (Sony) 
1321bd1264c3SSong Liu 	list_for_each_entry(va, head, list) {
1322a6cf4e0fSUladzislau Rezki (Sony) 		if (!is_within_this_va(va, size, align, vstart))
1323a6cf4e0fSUladzislau Rezki (Sony) 			continue;
1324a6cf4e0fSUladzislau Rezki (Sony) 
1325a6cf4e0fSUladzislau Rezki (Sony) 		return va;
1326a6cf4e0fSUladzislau Rezki (Sony) 	}
1327a6cf4e0fSUladzislau Rezki (Sony) 
1328a6cf4e0fSUladzislau Rezki (Sony) 	return NULL;
1329a6cf4e0fSUladzislau Rezki (Sony) }
1330a6cf4e0fSUladzislau Rezki (Sony) 
1331a6cf4e0fSUladzislau Rezki (Sony) static void
1332bd1264c3SSong Liu find_vmap_lowest_match_check(struct rb_root *root, struct list_head *head,
1333bd1264c3SSong Liu 			     unsigned long size, unsigned long align)
1334a6cf4e0fSUladzislau Rezki (Sony) {
1335a6cf4e0fSUladzislau Rezki (Sony) 	struct vmap_area *va_1, *va_2;
1336a6cf4e0fSUladzislau Rezki (Sony) 	unsigned long vstart;
1337a6cf4e0fSUladzislau Rezki (Sony) 	unsigned int rnd;
1338a6cf4e0fSUladzislau Rezki (Sony) 
1339a6cf4e0fSUladzislau Rezki (Sony) 	get_random_bytes(&rnd, sizeof(rnd));
1340a6cf4e0fSUladzislau Rezki (Sony) 	vstart = VMALLOC_START + rnd;
1341a6cf4e0fSUladzislau Rezki (Sony) 
1342bd1264c3SSong Liu 	va_1 = find_vmap_lowest_match(root, size, align, vstart, false);
1343bd1264c3SSong Liu 	va_2 = find_vmap_lowest_linear_match(head, size, align, vstart);
1344a6cf4e0fSUladzislau Rezki (Sony) 
1345a6cf4e0fSUladzislau Rezki (Sony) 	if (va_1 != va_2)
1346a6cf4e0fSUladzislau Rezki (Sony) 		pr_emerg("not lowest: t: 0x%p, l: 0x%p, v: 0x%lx\n",
1347a6cf4e0fSUladzislau Rezki (Sony) 			va_1, va_2, vstart);
1348a6cf4e0fSUladzislau Rezki (Sony) }
1349a6cf4e0fSUladzislau Rezki (Sony) #endif
1350a6cf4e0fSUladzislau Rezki (Sony) 
135168ad4a33SUladzislau Rezki (Sony) enum fit_type {
135268ad4a33SUladzislau Rezki (Sony) 	NOTHING_FIT = 0,
135368ad4a33SUladzislau Rezki (Sony) 	FL_FIT_TYPE = 1,	/* full fit */
135468ad4a33SUladzislau Rezki (Sony) 	LE_FIT_TYPE = 2,	/* left edge fit */
135568ad4a33SUladzislau Rezki (Sony) 	RE_FIT_TYPE = 3,	/* right edge fit */
135668ad4a33SUladzislau Rezki (Sony) 	NE_FIT_TYPE = 4		/* no edge fit */
135768ad4a33SUladzislau Rezki (Sony) };
135868ad4a33SUladzislau Rezki (Sony) 
135968ad4a33SUladzislau Rezki (Sony) static __always_inline enum fit_type
136068ad4a33SUladzislau Rezki (Sony) classify_va_fit_type(struct vmap_area *va,
136168ad4a33SUladzislau Rezki (Sony) 	unsigned long nva_start_addr, unsigned long size)
136268ad4a33SUladzislau Rezki (Sony) {
136368ad4a33SUladzislau Rezki (Sony) 	enum fit_type type;
136468ad4a33SUladzislau Rezki (Sony) 
136568ad4a33SUladzislau Rezki (Sony) 	/* Check if it is within VA. */
136668ad4a33SUladzislau Rezki (Sony) 	if (nva_start_addr < va->va_start ||
136768ad4a33SUladzislau Rezki (Sony) 			nva_start_addr + size > va->va_end)
136868ad4a33SUladzislau Rezki (Sony) 		return NOTHING_FIT;
136968ad4a33SUladzislau Rezki (Sony) 
137068ad4a33SUladzislau Rezki (Sony) 	/* Now classify. */
137168ad4a33SUladzislau Rezki (Sony) 	if (va->va_start == nva_start_addr) {
137268ad4a33SUladzislau Rezki (Sony) 		if (va->va_end == nva_start_addr + size)
137368ad4a33SUladzislau Rezki (Sony) 			type = FL_FIT_TYPE;
137468ad4a33SUladzislau Rezki (Sony) 		else
137568ad4a33SUladzislau Rezki (Sony) 			type = LE_FIT_TYPE;
137668ad4a33SUladzislau Rezki (Sony) 	} else if (va->va_end == nva_start_addr + size) {
137768ad4a33SUladzislau Rezki (Sony) 		type = RE_FIT_TYPE;
137868ad4a33SUladzislau Rezki (Sony) 	} else {
137968ad4a33SUladzislau Rezki (Sony) 		type = NE_FIT_TYPE;
138068ad4a33SUladzislau Rezki (Sony) 	}
138168ad4a33SUladzislau Rezki (Sony) 
138268ad4a33SUladzislau Rezki (Sony) 	return type;
138368ad4a33SUladzislau Rezki (Sony) }
138468ad4a33SUladzislau Rezki (Sony) 
138568ad4a33SUladzislau Rezki (Sony) static __always_inline int
1386f9863be4SUladzislau Rezki (Sony) adjust_va_to_fit_type(struct rb_root *root, struct list_head *head,
1387f9863be4SUladzislau Rezki (Sony) 		      struct vmap_area *va, unsigned long nva_start_addr,
1388f9863be4SUladzislau Rezki (Sony) 		      unsigned long size)
138968ad4a33SUladzislau Rezki (Sony) {
13902c929233SArnd Bergmann 	struct vmap_area *lva = NULL;
13911b23ff80SBaoquan He 	enum fit_type type = classify_va_fit_type(va, nva_start_addr, size);
139268ad4a33SUladzislau Rezki (Sony) 
139368ad4a33SUladzislau Rezki (Sony) 	if (type == FL_FIT_TYPE) {
139468ad4a33SUladzislau Rezki (Sony) 		/*
139568ad4a33SUladzislau Rezki (Sony) 		 * No need to split VA, it fully fits.
139668ad4a33SUladzislau Rezki (Sony) 		 *
139768ad4a33SUladzislau Rezki (Sony) 		 * |               |
139868ad4a33SUladzislau Rezki (Sony) 		 * V      NVA      V
139968ad4a33SUladzislau Rezki (Sony) 		 * |---------------|
140068ad4a33SUladzislau Rezki (Sony) 		 */
1401f9863be4SUladzislau Rezki (Sony) 		unlink_va_augment(va, root);
140268ad4a33SUladzislau Rezki (Sony) 		kmem_cache_free(vmap_area_cachep, va);
140368ad4a33SUladzislau Rezki (Sony) 	} else if (type == LE_FIT_TYPE) {
140468ad4a33SUladzislau Rezki (Sony) 		/*
140568ad4a33SUladzislau Rezki (Sony) 		 * Split left edge of fit VA.
140668ad4a33SUladzislau Rezki (Sony) 		 *
140768ad4a33SUladzislau Rezki (Sony) 		 * |       |
140868ad4a33SUladzislau Rezki (Sony) 		 * V  NVA  V   R
140968ad4a33SUladzislau Rezki (Sony) 		 * |-------|-------|
141068ad4a33SUladzislau Rezki (Sony) 		 */
141168ad4a33SUladzislau Rezki (Sony) 		va->va_start += size;
141268ad4a33SUladzislau Rezki (Sony) 	} else if (type == RE_FIT_TYPE) {
141368ad4a33SUladzislau Rezki (Sony) 		/*
141468ad4a33SUladzislau Rezki (Sony) 		 * Split right edge of fit VA.
141568ad4a33SUladzislau Rezki (Sony) 		 *
141668ad4a33SUladzislau Rezki (Sony) 		 *         |       |
141768ad4a33SUladzislau Rezki (Sony) 		 *     L   V  NVA  V
141868ad4a33SUladzislau Rezki (Sony) 		 * |-------|-------|
141968ad4a33SUladzislau Rezki (Sony) 		 */
142068ad4a33SUladzislau Rezki (Sony) 		va->va_end = nva_start_addr;
142168ad4a33SUladzislau Rezki (Sony) 	} else if (type == NE_FIT_TYPE) {
142268ad4a33SUladzislau Rezki (Sony) 		/*
142368ad4a33SUladzislau Rezki (Sony) 		 * Split no edge of fit VA.
142468ad4a33SUladzislau Rezki (Sony) 		 *
142568ad4a33SUladzislau Rezki (Sony) 		 *     |       |
142668ad4a33SUladzislau Rezki (Sony) 		 *   L V  NVA  V R
142768ad4a33SUladzislau Rezki (Sony) 		 * |---|-------|---|
142868ad4a33SUladzislau Rezki (Sony) 		 */
142982dd23e8SUladzislau Rezki (Sony) 		lva = __this_cpu_xchg(ne_fit_preload_node, NULL);
143082dd23e8SUladzislau Rezki (Sony) 		if (unlikely(!lva)) {
143182dd23e8SUladzislau Rezki (Sony) 			/*
143282dd23e8SUladzislau Rezki (Sony) 			 * For percpu allocator we do not do any pre-allocation
143382dd23e8SUladzislau Rezki (Sony) 			 * and leave it as it is. The reason is it most likely
143482dd23e8SUladzislau Rezki (Sony) 			 * never ends up with NE_FIT_TYPE splitting. In case of
143582dd23e8SUladzislau Rezki (Sony) 			 * percpu allocations offsets and sizes are aligned to
143682dd23e8SUladzislau Rezki (Sony) 			 * fixed align request, i.e. RE_FIT_TYPE and FL_FIT_TYPE
143782dd23e8SUladzislau Rezki (Sony) 			 * are its main fitting cases.
143882dd23e8SUladzislau Rezki (Sony) 			 *
143982dd23e8SUladzislau Rezki (Sony) 			 * There are a few exceptions though, as an example it is
144082dd23e8SUladzislau Rezki (Sony) 			 * a first allocation (early boot up) when we have "one"
144182dd23e8SUladzislau Rezki (Sony) 			 * big free space that has to be split.
1442060650a2SUladzislau Rezki (Sony) 			 *
1443060650a2SUladzislau Rezki (Sony) 			 * Also we can hit this path in case of regular "vmap"
1444060650a2SUladzislau Rezki (Sony) 			 * allocations, if "this" current CPU was not preloaded.
1445060650a2SUladzislau Rezki (Sony) 			 * See the comment in alloc_vmap_area() why. If so, then
1446060650a2SUladzislau Rezki (Sony) 			 * GFP_NOWAIT is used instead to get an extra object for
1447060650a2SUladzislau Rezki (Sony) 			 * split purpose. That is rare and most time does not
1448060650a2SUladzislau Rezki (Sony) 			 * occur.
1449060650a2SUladzislau Rezki (Sony) 			 *
1450060650a2SUladzislau Rezki (Sony) 			 * What happens if an allocation gets failed. Basically,
1451060650a2SUladzislau Rezki (Sony) 			 * an "overflow" path is triggered to purge lazily freed
1452060650a2SUladzislau Rezki (Sony) 			 * areas to free some memory, then, the "retry" path is
1453060650a2SUladzislau Rezki (Sony) 			 * triggered to repeat one more time. See more details
1454060650a2SUladzislau Rezki (Sony) 			 * in alloc_vmap_area() function.
145582dd23e8SUladzislau Rezki (Sony) 			 */
145668ad4a33SUladzislau Rezki (Sony) 			lva = kmem_cache_alloc(vmap_area_cachep, GFP_NOWAIT);
145782dd23e8SUladzislau Rezki (Sony) 			if (!lva)
145868ad4a33SUladzislau Rezki (Sony) 				return -1;
145982dd23e8SUladzislau Rezki (Sony) 		}
146068ad4a33SUladzislau Rezki (Sony) 
146168ad4a33SUladzislau Rezki (Sony) 		/*
146268ad4a33SUladzislau Rezki (Sony) 		 * Build the remainder.
146368ad4a33SUladzislau Rezki (Sony) 		 */
146468ad4a33SUladzislau Rezki (Sony) 		lva->va_start = va->va_start;
146568ad4a33SUladzislau Rezki (Sony) 		lva->va_end = nva_start_addr;
146668ad4a33SUladzislau Rezki (Sony) 
146768ad4a33SUladzislau Rezki (Sony) 		/*
146868ad4a33SUladzislau Rezki (Sony) 		 * Shrink this VA to remaining size.
146968ad4a33SUladzislau Rezki (Sony) 		 */
147068ad4a33SUladzislau Rezki (Sony) 		va->va_start = nva_start_addr + size;
147168ad4a33SUladzislau Rezki (Sony) 	} else {
147268ad4a33SUladzislau Rezki (Sony) 		return -1;
147368ad4a33SUladzislau Rezki (Sony) 	}
147468ad4a33SUladzislau Rezki (Sony) 
147568ad4a33SUladzislau Rezki (Sony) 	if (type != FL_FIT_TYPE) {
147668ad4a33SUladzislau Rezki (Sony) 		augment_tree_propagate_from(va);
147768ad4a33SUladzislau Rezki (Sony) 
14782c929233SArnd Bergmann 		if (lva)	/* type == NE_FIT_TYPE */
1479f9863be4SUladzislau Rezki (Sony) 			insert_vmap_area_augment(lva, &va->rb_node, root, head);
148068ad4a33SUladzislau Rezki (Sony) 	}
148168ad4a33SUladzislau Rezki (Sony) 
148268ad4a33SUladzislau Rezki (Sony) 	return 0;
148368ad4a33SUladzislau Rezki (Sony) }
148468ad4a33SUladzislau Rezki (Sony) 
148568ad4a33SUladzislau Rezki (Sony) /*
148668ad4a33SUladzislau Rezki (Sony)  * Returns a start address of the newly allocated area, if success.
148768ad4a33SUladzislau Rezki (Sony)  * Otherwise a vend is returned that indicates failure.
148868ad4a33SUladzislau Rezki (Sony)  */
148968ad4a33SUladzislau Rezki (Sony) static __always_inline unsigned long
1490f9863be4SUladzislau Rezki (Sony) __alloc_vmap_area(struct rb_root *root, struct list_head *head,
1491f9863be4SUladzislau Rezki (Sony) 	unsigned long size, unsigned long align,
1492cacca6baSUladzislau Rezki (Sony) 	unsigned long vstart, unsigned long vend)
149368ad4a33SUladzislau Rezki (Sony) {
14949333fe98SUladzislau Rezki 	bool adjust_search_size = true;
149568ad4a33SUladzislau Rezki (Sony) 	unsigned long nva_start_addr;
149668ad4a33SUladzislau Rezki (Sony) 	struct vmap_area *va;
149768ad4a33SUladzislau Rezki (Sony) 	int ret;
149868ad4a33SUladzislau Rezki (Sony) 
14999333fe98SUladzislau Rezki 	/*
15009333fe98SUladzislau Rezki 	 * Do not adjust when:
15019333fe98SUladzislau Rezki 	 *   a) align <= PAGE_SIZE, because it does not make any sense.
15029333fe98SUladzislau Rezki 	 *      All blocks(their start addresses) are at least PAGE_SIZE
15039333fe98SUladzislau Rezki 	 *      aligned anyway;
15049333fe98SUladzislau Rezki 	 *   b) a short range where a requested size corresponds to exactly
15059333fe98SUladzislau Rezki 	 *      specified [vstart:vend] interval and an alignment > PAGE_SIZE.
15069333fe98SUladzislau Rezki 	 *      With adjusted search length an allocation would not succeed.
15079333fe98SUladzislau Rezki 	 */
15089333fe98SUladzislau Rezki 	if (align <= PAGE_SIZE || (align > PAGE_SIZE && (vend - vstart) == size))
15099333fe98SUladzislau Rezki 		adjust_search_size = false;
15109333fe98SUladzislau Rezki 
1511f9863be4SUladzislau Rezki (Sony) 	va = find_vmap_lowest_match(root, size, align, vstart, adjust_search_size);
151268ad4a33SUladzislau Rezki (Sony) 	if (unlikely(!va))
151368ad4a33SUladzislau Rezki (Sony) 		return vend;
151468ad4a33SUladzislau Rezki (Sony) 
151568ad4a33SUladzislau Rezki (Sony) 	if (va->va_start > vstart)
151668ad4a33SUladzislau Rezki (Sony) 		nva_start_addr = ALIGN(va->va_start, align);
151768ad4a33SUladzislau Rezki (Sony) 	else
151868ad4a33SUladzislau Rezki (Sony) 		nva_start_addr = ALIGN(vstart, align);
151968ad4a33SUladzislau Rezki (Sony) 
152068ad4a33SUladzislau Rezki (Sony) 	/* Check the "vend" restriction. */
152168ad4a33SUladzislau Rezki (Sony) 	if (nva_start_addr + size > vend)
152268ad4a33SUladzislau Rezki (Sony) 		return vend;
152368ad4a33SUladzislau Rezki (Sony) 
152468ad4a33SUladzislau Rezki (Sony) 	/* Update the free vmap_area. */
1525f9863be4SUladzislau Rezki (Sony) 	ret = adjust_va_to_fit_type(root, head, va, nva_start_addr, size);
15261b23ff80SBaoquan He 	if (WARN_ON_ONCE(ret))
152768ad4a33SUladzislau Rezki (Sony) 		return vend;
152868ad4a33SUladzislau Rezki (Sony) 
1529a6cf4e0fSUladzislau Rezki (Sony) #if DEBUG_AUGMENT_LOWEST_MATCH_CHECK
1530bd1264c3SSong Liu 	find_vmap_lowest_match_check(root, head, size, align);
1531a6cf4e0fSUladzislau Rezki (Sony) #endif
1532a6cf4e0fSUladzislau Rezki (Sony) 
153368ad4a33SUladzislau Rezki (Sony) 	return nva_start_addr;
153468ad4a33SUladzislau Rezki (Sony) }
15354da56b99SChris Wilson 
1536db64fe02SNick Piggin /*
1537d98c9e83SAndrey Ryabinin  * Free a region of KVA allocated by alloc_vmap_area
1538d98c9e83SAndrey Ryabinin  */
1539d98c9e83SAndrey Ryabinin static void free_vmap_area(struct vmap_area *va)
1540d98c9e83SAndrey Ryabinin {
1541d98c9e83SAndrey Ryabinin 	/*
1542d98c9e83SAndrey Ryabinin 	 * Remove from the busy tree/list.
1543d98c9e83SAndrey Ryabinin 	 */
1544d98c9e83SAndrey Ryabinin 	spin_lock(&vmap_area_lock);
1545d98c9e83SAndrey Ryabinin 	unlink_va(va, &vmap_area_root);
1546d98c9e83SAndrey Ryabinin 	spin_unlock(&vmap_area_lock);
1547d98c9e83SAndrey Ryabinin 
1548d98c9e83SAndrey Ryabinin 	/*
1549d98c9e83SAndrey Ryabinin 	 * Insert/Merge it back to the free tree/list.
1550d98c9e83SAndrey Ryabinin 	 */
1551d98c9e83SAndrey Ryabinin 	spin_lock(&free_vmap_area_lock);
155296e2db45SUladzislau Rezki (Sony) 	merge_or_add_vmap_area_augment(va, &free_vmap_area_root, &free_vmap_area_list);
1553d98c9e83SAndrey Ryabinin 	spin_unlock(&free_vmap_area_lock);
1554d98c9e83SAndrey Ryabinin }
1555d98c9e83SAndrey Ryabinin 
1556187f8cc4SUladzislau Rezki (Sony) static inline void
1557187f8cc4SUladzislau Rezki (Sony) preload_this_cpu_lock(spinlock_t *lock, gfp_t gfp_mask, int node)
1558187f8cc4SUladzislau Rezki (Sony) {
1559187f8cc4SUladzislau Rezki (Sony) 	struct vmap_area *va = NULL;
1560187f8cc4SUladzislau Rezki (Sony) 
1561187f8cc4SUladzislau Rezki (Sony) 	/*
1562187f8cc4SUladzislau Rezki (Sony) 	 * Preload this CPU with one extra vmap_area object. It is used
1563187f8cc4SUladzislau Rezki (Sony) 	 * when fit type of free area is NE_FIT_TYPE. It guarantees that
1564187f8cc4SUladzislau Rezki (Sony) 	 * a CPU that does an allocation is preloaded.
1565187f8cc4SUladzislau Rezki (Sony) 	 *
1566187f8cc4SUladzislau Rezki (Sony) 	 * We do it in non-atomic context, thus it allows us to use more
1567187f8cc4SUladzislau Rezki (Sony) 	 * permissive allocation masks to be more stable under low memory
1568187f8cc4SUladzislau Rezki (Sony) 	 * condition and high memory pressure.
1569187f8cc4SUladzislau Rezki (Sony) 	 */
1570187f8cc4SUladzislau Rezki (Sony) 	if (!this_cpu_read(ne_fit_preload_node))
1571187f8cc4SUladzislau Rezki (Sony) 		va = kmem_cache_alloc_node(vmap_area_cachep, gfp_mask, node);
1572187f8cc4SUladzislau Rezki (Sony) 
1573187f8cc4SUladzislau Rezki (Sony) 	spin_lock(lock);
1574187f8cc4SUladzislau Rezki (Sony) 
1575187f8cc4SUladzislau Rezki (Sony) 	if (va && __this_cpu_cmpxchg(ne_fit_preload_node, NULL, va))
1576187f8cc4SUladzislau Rezki (Sony) 		kmem_cache_free(vmap_area_cachep, va);
1577187f8cc4SUladzislau Rezki (Sony) }
1578187f8cc4SUladzislau Rezki (Sony) 
1579d98c9e83SAndrey Ryabinin /*
1580db64fe02SNick Piggin  * Allocate a region of KVA of the specified size and alignment, within the
1581db64fe02SNick Piggin  * vstart and vend.
1582db64fe02SNick Piggin  */
1583db64fe02SNick Piggin static struct vmap_area *alloc_vmap_area(unsigned long size,
1584db64fe02SNick Piggin 				unsigned long align,
1585db64fe02SNick Piggin 				unsigned long vstart, unsigned long vend,
1586869176a0SBaoquan He 				int node, gfp_t gfp_mask,
1587869176a0SBaoquan He 				unsigned long va_flags)
1588db64fe02SNick Piggin {
1589187f8cc4SUladzislau Rezki (Sony) 	struct vmap_area *va;
159012e376a6SUladzislau Rezki (Sony) 	unsigned long freed;
15911da177e4SLinus Torvalds 	unsigned long addr;
1592db64fe02SNick Piggin 	int purged = 0;
1593d98c9e83SAndrey Ryabinin 	int ret;
1594db64fe02SNick Piggin 
15957e4a32c0SHyunmin Lee 	if (unlikely(!size || offset_in_page(size) || !is_power_of_2(align)))
15967e4a32c0SHyunmin Lee 		return ERR_PTR(-EINVAL);
1597db64fe02SNick Piggin 
159868ad4a33SUladzislau Rezki (Sony) 	if (unlikely(!vmap_initialized))
159968ad4a33SUladzislau Rezki (Sony) 		return ERR_PTR(-EBUSY);
160068ad4a33SUladzislau Rezki (Sony) 
16015803ed29SChristoph Hellwig 	might_sleep();
1602f07116d7SUladzislau Rezki (Sony) 	gfp_mask = gfp_mask & GFP_RECLAIM_MASK;
16034da56b99SChris Wilson 
1604f07116d7SUladzislau Rezki (Sony) 	va = kmem_cache_alloc_node(vmap_area_cachep, gfp_mask, node);
1605db64fe02SNick Piggin 	if (unlikely(!va))
1606db64fe02SNick Piggin 		return ERR_PTR(-ENOMEM);
1607db64fe02SNick Piggin 
16087f88f88fSCatalin Marinas 	/*
16097f88f88fSCatalin Marinas 	 * Only scan the relevant parts containing pointers to other objects
16107f88f88fSCatalin Marinas 	 * to avoid false negatives.
16117f88f88fSCatalin Marinas 	 */
1612f07116d7SUladzislau Rezki (Sony) 	kmemleak_scan_area(&va->rb_node, SIZE_MAX, gfp_mask);
16137f88f88fSCatalin Marinas 
1614db64fe02SNick Piggin retry:
1615187f8cc4SUladzislau Rezki (Sony) 	preload_this_cpu_lock(&free_vmap_area_lock, gfp_mask, node);
1616f9863be4SUladzislau Rezki (Sony) 	addr = __alloc_vmap_area(&free_vmap_area_root, &free_vmap_area_list,
1617f9863be4SUladzislau Rezki (Sony) 		size, align, vstart, vend);
1618187f8cc4SUladzislau Rezki (Sony) 	spin_unlock(&free_vmap_area_lock);
161968ad4a33SUladzislau Rezki (Sony) 
1620cf243da6SUladzislau Rezki (Sony) 	trace_alloc_vmap_area(addr, size, align, vstart, vend, addr == vend);
1621cf243da6SUladzislau Rezki (Sony) 
162289699605SNick Piggin 	/*
162368ad4a33SUladzislau Rezki (Sony) 	 * If an allocation fails, the "vend" address is
162468ad4a33SUladzislau Rezki (Sony) 	 * returned. Therefore trigger the overflow path.
162589699605SNick Piggin 	 */
162668ad4a33SUladzislau Rezki (Sony) 	if (unlikely(addr == vend))
162789699605SNick Piggin 		goto overflow;
162889699605SNick Piggin 
162989699605SNick Piggin 	va->va_start = addr;
163089699605SNick Piggin 	va->va_end = addr + size;
1631688fcbfcSPengfei Li 	va->vm = NULL;
1632869176a0SBaoquan He 	va->flags = va_flags;
163368ad4a33SUladzislau Rezki (Sony) 
1634e36176beSUladzislau Rezki (Sony) 	spin_lock(&vmap_area_lock);
1635e36176beSUladzislau Rezki (Sony) 	insert_vmap_area(va, &vmap_area_root, &vmap_area_list);
163689699605SNick Piggin 	spin_unlock(&vmap_area_lock);
163789699605SNick Piggin 
163861e16557SWang Xiaoqiang 	BUG_ON(!IS_ALIGNED(va->va_start, align));
163989699605SNick Piggin 	BUG_ON(va->va_start < vstart);
164089699605SNick Piggin 	BUG_ON(va->va_end > vend);
164189699605SNick Piggin 
1642d98c9e83SAndrey Ryabinin 	ret = kasan_populate_vmalloc(addr, size);
1643d98c9e83SAndrey Ryabinin 	if (ret) {
1644d98c9e83SAndrey Ryabinin 		free_vmap_area(va);
1645d98c9e83SAndrey Ryabinin 		return ERR_PTR(ret);
1646d98c9e83SAndrey Ryabinin 	}
1647d98c9e83SAndrey Ryabinin 
164889699605SNick Piggin 	return va;
164989699605SNick Piggin 
16507766970cSNick Piggin overflow:
1651db64fe02SNick Piggin 	if (!purged) {
1652db64fe02SNick Piggin 		purge_vmap_area_lazy();
1653db64fe02SNick Piggin 		purged = 1;
1654db64fe02SNick Piggin 		goto retry;
1655db64fe02SNick Piggin 	}
16564da56b99SChris Wilson 
165712e376a6SUladzislau Rezki (Sony) 	freed = 0;
16584da56b99SChris Wilson 	blocking_notifier_call_chain(&vmap_notify_list, 0, &freed);
165912e376a6SUladzislau Rezki (Sony) 
16604da56b99SChris Wilson 	if (freed > 0) {
16614da56b99SChris Wilson 		purged = 0;
16624da56b99SChris Wilson 		goto retry;
16634da56b99SChris Wilson 	}
16644da56b99SChris Wilson 
166503497d76SFlorian Fainelli 	if (!(gfp_mask & __GFP_NOWARN) && printk_ratelimit())
1666756a025fSJoe Perches 		pr_warn("vmap allocation for size %lu failed: use vmalloc=<size> to increase size\n",
1667756a025fSJoe Perches 			size);
166868ad4a33SUladzislau Rezki (Sony) 
166968ad4a33SUladzislau Rezki (Sony) 	kmem_cache_free(vmap_area_cachep, va);
1670db64fe02SNick Piggin 	return ERR_PTR(-EBUSY);
1671db64fe02SNick Piggin }
1672db64fe02SNick Piggin 
16734da56b99SChris Wilson int register_vmap_purge_notifier(struct notifier_block *nb)
16744da56b99SChris Wilson {
16754da56b99SChris Wilson 	return blocking_notifier_chain_register(&vmap_notify_list, nb);
16764da56b99SChris Wilson }
16774da56b99SChris Wilson EXPORT_SYMBOL_GPL(register_vmap_purge_notifier);
16784da56b99SChris Wilson 
16794da56b99SChris Wilson int unregister_vmap_purge_notifier(struct notifier_block *nb)
16804da56b99SChris Wilson {
16814da56b99SChris Wilson 	return blocking_notifier_chain_unregister(&vmap_notify_list, nb);
16824da56b99SChris Wilson }
16834da56b99SChris Wilson EXPORT_SYMBOL_GPL(unregister_vmap_purge_notifier);
16844da56b99SChris Wilson 
1685db64fe02SNick Piggin /*
1686db64fe02SNick Piggin  * lazy_max_pages is the maximum amount of virtual address space we gather up
1687db64fe02SNick Piggin  * before attempting to purge with a TLB flush.
1688db64fe02SNick Piggin  *
1689db64fe02SNick Piggin  * There is a tradeoff here: a larger number will cover more kernel page tables
1690db64fe02SNick Piggin  * and take slightly longer to purge, but it will linearly reduce the number of
1691db64fe02SNick Piggin  * global TLB flushes that must be performed. It would seem natural to scale
1692db64fe02SNick Piggin  * this number up linearly with the number of CPUs (because vmapping activity
1693db64fe02SNick Piggin  * could also scale linearly with the number of CPUs), however it is likely
1694db64fe02SNick Piggin  * that in practice, workloads might be constrained in other ways that mean
1695db64fe02SNick Piggin  * vmap activity will not scale linearly with CPUs. Also, I want to be
1696db64fe02SNick Piggin  * conservative and not introduce a big latency on huge systems, so go with
1697db64fe02SNick Piggin  * a less aggressive log scale. It will still be an improvement over the old
1698db64fe02SNick Piggin  * code, and it will be simple to change the scale factor if we find that it
1699db64fe02SNick Piggin  * becomes a problem on bigger systems.
1700db64fe02SNick Piggin  */
1701db64fe02SNick Piggin static unsigned long lazy_max_pages(void)
1702db64fe02SNick Piggin {
1703db64fe02SNick Piggin 	unsigned int log;
1704db64fe02SNick Piggin 
1705db64fe02SNick Piggin 	log = fls(num_online_cpus());
1706db64fe02SNick Piggin 
1707db64fe02SNick Piggin 	return log * (32UL * 1024 * 1024 / PAGE_SIZE);
1708db64fe02SNick Piggin }
1709db64fe02SNick Piggin 
17104d36e6f8SUladzislau Rezki (Sony) static atomic_long_t vmap_lazy_nr = ATOMIC_LONG_INIT(0);
1711db64fe02SNick Piggin 
17120574ecd1SChristoph Hellwig /*
1713f0953a1bSIngo Molnar  * Serialize vmap purging.  There is no actual critical section protected
1714153090f2SBaoquan He  * by this lock, but we want to avoid concurrent calls for performance
17150574ecd1SChristoph Hellwig  * reasons and to make the pcpu_get_vm_areas more deterministic.
17160574ecd1SChristoph Hellwig  */
1717f9e09977SChristoph Hellwig static DEFINE_MUTEX(vmap_purge_lock);
17180574ecd1SChristoph Hellwig 
171902b709dfSNick Piggin /* for per-CPU blocks */
172002b709dfSNick Piggin static void purge_fragmented_blocks_allcpus(void);
172102b709dfSNick Piggin 
17223ee48b6aSCliff Wickman /*
1723db64fe02SNick Piggin  * Purges all lazily-freed vmap areas.
1724db64fe02SNick Piggin  */
17250574ecd1SChristoph Hellwig static bool __purge_vmap_area_lazy(unsigned long start, unsigned long end)
1726db64fe02SNick Piggin {
17274d36e6f8SUladzislau Rezki (Sony) 	unsigned long resched_threshold;
17286030fd5fSUladzislau Rezki (Sony) 	unsigned int num_purged_areas = 0;
1729baa468a6SBaoquan He 	struct list_head local_purge_list;
173096e2db45SUladzislau Rezki (Sony) 	struct vmap_area *va, *n_va;
1731db64fe02SNick Piggin 
17320574ecd1SChristoph Hellwig 	lockdep_assert_held(&vmap_purge_lock);
173302b709dfSNick Piggin 
173496e2db45SUladzislau Rezki (Sony) 	spin_lock(&purge_vmap_area_lock);
173596e2db45SUladzislau Rezki (Sony) 	purge_vmap_area_root = RB_ROOT;
1736baa468a6SBaoquan He 	list_replace_init(&purge_vmap_area_list, &local_purge_list);
173796e2db45SUladzislau Rezki (Sony) 	spin_unlock(&purge_vmap_area_lock);
173896e2db45SUladzislau Rezki (Sony) 
1739baa468a6SBaoquan He 	if (unlikely(list_empty(&local_purge_list)))
17406030fd5fSUladzislau Rezki (Sony) 		goto out;
174168571be9SUladzislau Rezki (Sony) 
174296e2db45SUladzislau Rezki (Sony) 	start = min(start,
1743baa468a6SBaoquan He 		list_first_entry(&local_purge_list,
174496e2db45SUladzislau Rezki (Sony) 			struct vmap_area, list)->va_start);
174596e2db45SUladzislau Rezki (Sony) 
174696e2db45SUladzislau Rezki (Sony) 	end = max(end,
1747baa468a6SBaoquan He 		list_last_entry(&local_purge_list,
174896e2db45SUladzislau Rezki (Sony) 			struct vmap_area, list)->va_end);
1749db64fe02SNick Piggin 
17500574ecd1SChristoph Hellwig 	flush_tlb_kernel_range(start, end);
17514d36e6f8SUladzislau Rezki (Sony) 	resched_threshold = lazy_max_pages() << 1;
1752db64fe02SNick Piggin 
1753e36176beSUladzislau Rezki (Sony) 	spin_lock(&free_vmap_area_lock);
1754baa468a6SBaoquan He 	list_for_each_entry_safe(va, n_va, &local_purge_list, list) {
17554d36e6f8SUladzislau Rezki (Sony) 		unsigned long nr = (va->va_end - va->va_start) >> PAGE_SHIFT;
17563c5c3cfbSDaniel Axtens 		unsigned long orig_start = va->va_start;
17573c5c3cfbSDaniel Axtens 		unsigned long orig_end = va->va_end;
1758763b218dSJoel Fernandes 
1759dd3b8353SUladzislau Rezki (Sony) 		/*
1760dd3b8353SUladzislau Rezki (Sony) 		 * Finally insert or merge lazily-freed area. It is
1761dd3b8353SUladzislau Rezki (Sony) 		 * detached and there is no need to "unlink" it from
1762dd3b8353SUladzislau Rezki (Sony) 		 * anything.
1763dd3b8353SUladzislau Rezki (Sony) 		 */
176496e2db45SUladzislau Rezki (Sony) 		va = merge_or_add_vmap_area_augment(va, &free_vmap_area_root,
17653c5c3cfbSDaniel Axtens 				&free_vmap_area_list);
17663c5c3cfbSDaniel Axtens 
17679c801f61SUladzislau Rezki (Sony) 		if (!va)
17689c801f61SUladzislau Rezki (Sony) 			continue;
17699c801f61SUladzislau Rezki (Sony) 
17703c5c3cfbSDaniel Axtens 		if (is_vmalloc_or_module_addr((void *)orig_start))
17713c5c3cfbSDaniel Axtens 			kasan_release_vmalloc(orig_start, orig_end,
17723c5c3cfbSDaniel Axtens 					      va->va_start, va->va_end);
1773dd3b8353SUladzislau Rezki (Sony) 
17744d36e6f8SUladzislau Rezki (Sony) 		atomic_long_sub(nr, &vmap_lazy_nr);
17756030fd5fSUladzislau Rezki (Sony) 		num_purged_areas++;
177668571be9SUladzislau Rezki (Sony) 
17774d36e6f8SUladzislau Rezki (Sony) 		if (atomic_long_read(&vmap_lazy_nr) < resched_threshold)
1778e36176beSUladzislau Rezki (Sony) 			cond_resched_lock(&free_vmap_area_lock);
1779763b218dSJoel Fernandes 	}
1780e36176beSUladzislau Rezki (Sony) 	spin_unlock(&free_vmap_area_lock);
17816030fd5fSUladzislau Rezki (Sony) 
17826030fd5fSUladzislau Rezki (Sony) out:
17836030fd5fSUladzislau Rezki (Sony) 	trace_purge_vmap_area_lazy(start, end, num_purged_areas);
17846030fd5fSUladzislau Rezki (Sony) 	return num_purged_areas > 0;
1785db64fe02SNick Piggin }
1786db64fe02SNick Piggin 
1787db64fe02SNick Piggin /*
1788db64fe02SNick Piggin  * Kick off a purge of the outstanding lazy areas.
1789db64fe02SNick Piggin  */
1790db64fe02SNick Piggin static void purge_vmap_area_lazy(void)
1791db64fe02SNick Piggin {
1792f9e09977SChristoph Hellwig 	mutex_lock(&vmap_purge_lock);
17930574ecd1SChristoph Hellwig 	purge_fragmented_blocks_allcpus();
17940574ecd1SChristoph Hellwig 	__purge_vmap_area_lazy(ULONG_MAX, 0);
1795f9e09977SChristoph Hellwig 	mutex_unlock(&vmap_purge_lock);
1796db64fe02SNick Piggin }
1797db64fe02SNick Piggin 
1798690467c8SUladzislau Rezki (Sony) static void drain_vmap_area_work(struct work_struct *work)
1799690467c8SUladzislau Rezki (Sony) {
1800690467c8SUladzislau Rezki (Sony) 	unsigned long nr_lazy;
1801690467c8SUladzislau Rezki (Sony) 
1802690467c8SUladzislau Rezki (Sony) 	do {
1803690467c8SUladzislau Rezki (Sony) 		mutex_lock(&vmap_purge_lock);
1804690467c8SUladzislau Rezki (Sony) 		__purge_vmap_area_lazy(ULONG_MAX, 0);
1805690467c8SUladzislau Rezki (Sony) 		mutex_unlock(&vmap_purge_lock);
1806690467c8SUladzislau Rezki (Sony) 
1807690467c8SUladzislau Rezki (Sony) 		/* Recheck if further work is required. */
1808690467c8SUladzislau Rezki (Sony) 		nr_lazy = atomic_long_read(&vmap_lazy_nr);
1809690467c8SUladzislau Rezki (Sony) 	} while (nr_lazy > lazy_max_pages());
1810690467c8SUladzislau Rezki (Sony) }
1811690467c8SUladzislau Rezki (Sony) 
1812db64fe02SNick Piggin /*
1813edd89818SUladzislau Rezki (Sony)  * Free a vmap area, caller ensuring that the area has been unmapped,
1814edd89818SUladzislau Rezki (Sony)  * unlinked and flush_cache_vunmap had been called for the correct
1815edd89818SUladzislau Rezki (Sony)  * range previously.
1816db64fe02SNick Piggin  */
181764141da5SJeremy Fitzhardinge static void free_vmap_area_noflush(struct vmap_area *va)
1818db64fe02SNick Piggin {
18198c4196feSUladzislau Rezki (Sony) 	unsigned long nr_lazy_max = lazy_max_pages();
18208c4196feSUladzislau Rezki (Sony) 	unsigned long va_start = va->va_start;
18214d36e6f8SUladzislau Rezki (Sony) 	unsigned long nr_lazy;
182280c4bd7aSChris Wilson 
1823edd89818SUladzislau Rezki (Sony) 	if (WARN_ON_ONCE(!list_empty(&va->list)))
1824edd89818SUladzislau Rezki (Sony) 		return;
1825dd3b8353SUladzislau Rezki (Sony) 
18264d36e6f8SUladzislau Rezki (Sony) 	nr_lazy = atomic_long_add_return((va->va_end - va->va_start) >>
18274d36e6f8SUladzislau Rezki (Sony) 				PAGE_SHIFT, &vmap_lazy_nr);
182880c4bd7aSChris Wilson 
182996e2db45SUladzislau Rezki (Sony) 	/*
183096e2db45SUladzislau Rezki (Sony) 	 * Merge or place it to the purge tree/list.
183196e2db45SUladzislau Rezki (Sony) 	 */
183296e2db45SUladzislau Rezki (Sony) 	spin_lock(&purge_vmap_area_lock);
183396e2db45SUladzislau Rezki (Sony) 	merge_or_add_vmap_area(va,
183496e2db45SUladzislau Rezki (Sony) 		&purge_vmap_area_root, &purge_vmap_area_list);
183596e2db45SUladzislau Rezki (Sony) 	spin_unlock(&purge_vmap_area_lock);
183680c4bd7aSChris Wilson 
18378c4196feSUladzislau Rezki (Sony) 	trace_free_vmap_area_noflush(va_start, nr_lazy, nr_lazy_max);
18388c4196feSUladzislau Rezki (Sony) 
183996e2db45SUladzislau Rezki (Sony) 	/* After this point, we may free va at any time */
18408c4196feSUladzislau Rezki (Sony) 	if (unlikely(nr_lazy > nr_lazy_max))
1841690467c8SUladzislau Rezki (Sony) 		schedule_work(&drain_vmap_work);
1842db64fe02SNick Piggin }
1843db64fe02SNick Piggin 
1844b29acbdcSNick Piggin /*
1845b29acbdcSNick Piggin  * Free and unmap a vmap area
1846b29acbdcSNick Piggin  */
1847b29acbdcSNick Piggin static void free_unmap_vmap_area(struct vmap_area *va)
1848b29acbdcSNick Piggin {
1849b29acbdcSNick Piggin 	flush_cache_vunmap(va->va_start, va->va_end);
18504ad0ae8cSNicholas Piggin 	vunmap_range_noflush(va->va_start, va->va_end);
18518e57f8acSVlastimil Babka 	if (debug_pagealloc_enabled_static())
185282a2e924SChintan Pandya 		flush_tlb_kernel_range(va->va_start, va->va_end);
185382a2e924SChintan Pandya 
1854c8eef01eSChristoph Hellwig 	free_vmap_area_noflush(va);
1855b29acbdcSNick Piggin }
1856b29acbdcSNick Piggin 
1857993d0b28SMatthew Wilcox (Oracle) struct vmap_area *find_vmap_area(unsigned long addr)
1858db64fe02SNick Piggin {
1859db64fe02SNick Piggin 	struct vmap_area *va;
1860db64fe02SNick Piggin 
1861db64fe02SNick Piggin 	spin_lock(&vmap_area_lock);
1862899c6efeSUladzislau Rezki (Sony) 	va = __find_vmap_area(addr, &vmap_area_root);
1863db64fe02SNick Piggin 	spin_unlock(&vmap_area_lock);
1864db64fe02SNick Piggin 
1865db64fe02SNick Piggin 	return va;
1866db64fe02SNick Piggin }
1867db64fe02SNick Piggin 
1868edd89818SUladzislau Rezki (Sony) static struct vmap_area *find_unlink_vmap_area(unsigned long addr)
1869edd89818SUladzislau Rezki (Sony) {
1870edd89818SUladzislau Rezki (Sony) 	struct vmap_area *va;
1871edd89818SUladzislau Rezki (Sony) 
1872edd89818SUladzislau Rezki (Sony) 	spin_lock(&vmap_area_lock);
1873edd89818SUladzislau Rezki (Sony) 	va = __find_vmap_area(addr, &vmap_area_root);
1874edd89818SUladzislau Rezki (Sony) 	if (va)
1875edd89818SUladzislau Rezki (Sony) 		unlink_va(va, &vmap_area_root);
1876edd89818SUladzislau Rezki (Sony) 	spin_unlock(&vmap_area_lock);
1877edd89818SUladzislau Rezki (Sony) 
1878edd89818SUladzislau Rezki (Sony) 	return va;
1879edd89818SUladzislau Rezki (Sony) }
1880edd89818SUladzislau Rezki (Sony) 
1881db64fe02SNick Piggin /*** Per cpu kva allocator ***/
1882db64fe02SNick Piggin 
1883db64fe02SNick Piggin /*
1884db64fe02SNick Piggin  * vmap space is limited especially on 32 bit architectures. Ensure there is
1885db64fe02SNick Piggin  * room for at least 16 percpu vmap blocks per CPU.
1886db64fe02SNick Piggin  */
1887db64fe02SNick Piggin /*
1888db64fe02SNick Piggin  * If we had a constant VMALLOC_START and VMALLOC_END, we'd like to be able
1889db64fe02SNick Piggin  * to #define VMALLOC_SPACE		(VMALLOC_END-VMALLOC_START). Guess
1890db64fe02SNick Piggin  * instead (we just need a rough idea)
1891db64fe02SNick Piggin  */
1892db64fe02SNick Piggin #if BITS_PER_LONG == 32
1893db64fe02SNick Piggin #define VMALLOC_SPACE		(128UL*1024*1024)
1894db64fe02SNick Piggin #else
1895db64fe02SNick Piggin #define VMALLOC_SPACE		(128UL*1024*1024*1024)
1896db64fe02SNick Piggin #endif
1897db64fe02SNick Piggin 
1898db64fe02SNick Piggin #define VMALLOC_PAGES		(VMALLOC_SPACE / PAGE_SIZE)
1899db64fe02SNick Piggin #define VMAP_MAX_ALLOC		BITS_PER_LONG	/* 256K with 4K pages */
1900db64fe02SNick Piggin #define VMAP_BBMAP_BITS_MAX	1024	/* 4MB with 4K pages */
1901db64fe02SNick Piggin #define VMAP_BBMAP_BITS_MIN	(VMAP_MAX_ALLOC*2)
1902db64fe02SNick Piggin #define VMAP_MIN(x, y)		((x) < (y) ? (x) : (y)) /* can't use min() */
1903db64fe02SNick Piggin #define VMAP_MAX(x, y)		((x) > (y) ? (x) : (y)) /* can't use max() */
1904f982f915SClemens Ladisch #define VMAP_BBMAP_BITS		\
1905f982f915SClemens Ladisch 		VMAP_MIN(VMAP_BBMAP_BITS_MAX,	\
1906db64fe02SNick Piggin 		VMAP_MAX(VMAP_BBMAP_BITS_MIN,	\
1907f982f915SClemens Ladisch 			VMALLOC_PAGES / roundup_pow_of_two(NR_CPUS) / 16))
1908db64fe02SNick Piggin 
1909db64fe02SNick Piggin #define VMAP_BLOCK_SIZE		(VMAP_BBMAP_BITS * PAGE_SIZE)
1910db64fe02SNick Piggin 
1911869176a0SBaoquan He #define VMAP_RAM		0x1 /* indicates vm_map_ram area*/
1912869176a0SBaoquan He #define VMAP_BLOCK		0x2 /* mark out the vmap_block sub-type*/
1913869176a0SBaoquan He #define VMAP_FLAGS_MASK		0x3
1914869176a0SBaoquan He 
1915db64fe02SNick Piggin struct vmap_block_queue {
1916db64fe02SNick Piggin 	spinlock_t lock;
1917db64fe02SNick Piggin 	struct list_head free;
1918*062eacf5SUladzislau Rezki (Sony) 
1919*062eacf5SUladzislau Rezki (Sony) 	/*
1920*062eacf5SUladzislau Rezki (Sony) 	 * An xarray requires an extra memory dynamically to
1921*062eacf5SUladzislau Rezki (Sony) 	 * be allocated. If it is an issue, we can use rb-tree
1922*062eacf5SUladzislau Rezki (Sony) 	 * instead.
1923*062eacf5SUladzislau Rezki (Sony) 	 */
1924*062eacf5SUladzislau Rezki (Sony) 	struct xarray vmap_blocks;
1925db64fe02SNick Piggin };
1926db64fe02SNick Piggin 
1927db64fe02SNick Piggin struct vmap_block {
1928db64fe02SNick Piggin 	spinlock_t lock;
1929db64fe02SNick Piggin 	struct vmap_area *va;
1930db64fe02SNick Piggin 	unsigned long free, dirty;
1931d76f9954SBaoquan He 	DECLARE_BITMAP(used_map, VMAP_BBMAP_BITS);
19327d61bfe8SRoman Pen 	unsigned long dirty_min, dirty_max; /*< dirty range */
1933db64fe02SNick Piggin 	struct list_head free_list;
1934db64fe02SNick Piggin 	struct rcu_head rcu_head;
193502b709dfSNick Piggin 	struct list_head purge;
1936db64fe02SNick Piggin };
1937db64fe02SNick Piggin 
1938db64fe02SNick Piggin /* Queue of free and dirty vmap blocks, for allocation and flushing purposes */
1939db64fe02SNick Piggin static DEFINE_PER_CPU(struct vmap_block_queue, vmap_block_queue);
1940db64fe02SNick Piggin 
1941db64fe02SNick Piggin /*
1942*062eacf5SUladzislau Rezki (Sony)  * In order to fast access to any "vmap_block" associated with a
1943*062eacf5SUladzislau Rezki (Sony)  * specific address, we use a hash.
1944*062eacf5SUladzislau Rezki (Sony)  *
1945*062eacf5SUladzislau Rezki (Sony)  * A per-cpu vmap_block_queue is used in both ways, to serialize
1946*062eacf5SUladzislau Rezki (Sony)  * an access to free block chains among CPUs(alloc path) and it
1947*062eacf5SUladzislau Rezki (Sony)  * also acts as a vmap_block hash(alloc/free paths). It means we
1948*062eacf5SUladzislau Rezki (Sony)  * overload it, since we already have the per-cpu array which is
1949*062eacf5SUladzislau Rezki (Sony)  * used as a hash table. When used as a hash a 'cpu' passed to
1950*062eacf5SUladzislau Rezki (Sony)  * per_cpu() is not actually a CPU but rather a hash index.
1951*062eacf5SUladzislau Rezki (Sony)  *
1952*062eacf5SUladzislau Rezki (Sony)  * A hash function is addr_to_vb_xarray() which hashes any address
1953*062eacf5SUladzislau Rezki (Sony)  * to a specific index(in a hash) it belongs to. This then uses a
1954*062eacf5SUladzislau Rezki (Sony)  * per_cpu() macro to access an array with generated index.
1955*062eacf5SUladzislau Rezki (Sony)  *
1956*062eacf5SUladzislau Rezki (Sony)  * An example:
1957*062eacf5SUladzislau Rezki (Sony)  *
1958*062eacf5SUladzislau Rezki (Sony)  *  CPU_1  CPU_2  CPU_0
1959*062eacf5SUladzislau Rezki (Sony)  *    |      |      |
1960*062eacf5SUladzislau Rezki (Sony)  *    V      V      V
1961*062eacf5SUladzislau Rezki (Sony)  * 0     10     20     30     40     50     60
1962*062eacf5SUladzislau Rezki (Sony)  * |------|------|------|------|------|------|...<vmap address space>
1963*062eacf5SUladzislau Rezki (Sony)  *   CPU0   CPU1   CPU2   CPU0   CPU1   CPU2
1964*062eacf5SUladzislau Rezki (Sony)  *
1965*062eacf5SUladzislau Rezki (Sony)  * - CPU_1 invokes vm_unmap_ram(6), 6 belongs to CPU0 zone, thus
1966*062eacf5SUladzislau Rezki (Sony)  *   it access: CPU0/INDEX0 -> vmap_blocks -> xa_lock;
1967*062eacf5SUladzislau Rezki (Sony)  *
1968*062eacf5SUladzislau Rezki (Sony)  * - CPU_2 invokes vm_unmap_ram(11), 11 belongs to CPU1 zone, thus
1969*062eacf5SUladzislau Rezki (Sony)  *   it access: CPU1/INDEX1 -> vmap_blocks -> xa_lock;
1970*062eacf5SUladzislau Rezki (Sony)  *
1971*062eacf5SUladzislau Rezki (Sony)  * - CPU_0 invokes vm_unmap_ram(20), 20 belongs to CPU2 zone, thus
1972*062eacf5SUladzislau Rezki (Sony)  *   it access: CPU2/INDEX2 -> vmap_blocks -> xa_lock.
1973*062eacf5SUladzislau Rezki (Sony)  *
1974*062eacf5SUladzislau Rezki (Sony)  * This technique almost always avoids lock contention on insert/remove,
1975*062eacf5SUladzislau Rezki (Sony)  * however xarray spinlocks protect against any contention that remains.
1976db64fe02SNick Piggin  */
1977*062eacf5SUladzislau Rezki (Sony) static struct xarray *
1978*062eacf5SUladzislau Rezki (Sony) addr_to_vb_xarray(unsigned long addr)
1979*062eacf5SUladzislau Rezki (Sony) {
1980*062eacf5SUladzislau Rezki (Sony) 	int index = (addr / VMAP_BLOCK_SIZE) % num_possible_cpus();
1981*062eacf5SUladzislau Rezki (Sony) 
1982*062eacf5SUladzislau Rezki (Sony) 	return &per_cpu(vmap_block_queue, index).vmap_blocks;
1983*062eacf5SUladzislau Rezki (Sony) }
1984db64fe02SNick Piggin 
1985db64fe02SNick Piggin /*
1986db64fe02SNick Piggin  * We should probably have a fallback mechanism to allocate virtual memory
1987db64fe02SNick Piggin  * out of partially filled vmap blocks. However vmap block sizing should be
1988db64fe02SNick Piggin  * fairly reasonable according to the vmalloc size, so it shouldn't be a
1989db64fe02SNick Piggin  * big problem.
1990db64fe02SNick Piggin  */
1991db64fe02SNick Piggin 
1992db64fe02SNick Piggin static unsigned long addr_to_vb_idx(unsigned long addr)
1993db64fe02SNick Piggin {
1994db64fe02SNick Piggin 	addr -= VMALLOC_START & ~(VMAP_BLOCK_SIZE-1);
1995db64fe02SNick Piggin 	addr /= VMAP_BLOCK_SIZE;
1996db64fe02SNick Piggin 	return addr;
1997db64fe02SNick Piggin }
1998db64fe02SNick Piggin 
1999cf725ce2SRoman Pen static void *vmap_block_vaddr(unsigned long va_start, unsigned long pages_off)
2000cf725ce2SRoman Pen {
2001cf725ce2SRoman Pen 	unsigned long addr;
2002cf725ce2SRoman Pen 
2003cf725ce2SRoman Pen 	addr = va_start + (pages_off << PAGE_SHIFT);
2004cf725ce2SRoman Pen 	BUG_ON(addr_to_vb_idx(addr) != addr_to_vb_idx(va_start));
2005cf725ce2SRoman Pen 	return (void *)addr;
2006cf725ce2SRoman Pen }
2007cf725ce2SRoman Pen 
2008cf725ce2SRoman Pen /**
2009cf725ce2SRoman Pen  * new_vmap_block - allocates new vmap_block and occupies 2^order pages in this
2010cf725ce2SRoman Pen  *                  block. Of course pages number can't exceed VMAP_BBMAP_BITS
2011cf725ce2SRoman Pen  * @order:    how many 2^order pages should be occupied in newly allocated block
2012cf725ce2SRoman Pen  * @gfp_mask: flags for the page level allocator
2013cf725ce2SRoman Pen  *
2014a862f68aSMike Rapoport  * Return: virtual address in a newly allocated block or ERR_PTR(-errno)
2015cf725ce2SRoman Pen  */
2016cf725ce2SRoman Pen static void *new_vmap_block(unsigned int order, gfp_t gfp_mask)
2017db64fe02SNick Piggin {
2018db64fe02SNick Piggin 	struct vmap_block_queue *vbq;
2019db64fe02SNick Piggin 	struct vmap_block *vb;
2020db64fe02SNick Piggin 	struct vmap_area *va;
2021*062eacf5SUladzislau Rezki (Sony) 	struct xarray *xa;
2022db64fe02SNick Piggin 	unsigned long vb_idx;
2023db64fe02SNick Piggin 	int node, err;
2024cf725ce2SRoman Pen 	void *vaddr;
2025db64fe02SNick Piggin 
2026db64fe02SNick Piggin 	node = numa_node_id();
2027db64fe02SNick Piggin 
2028db64fe02SNick Piggin 	vb = kmalloc_node(sizeof(struct vmap_block),
2029db64fe02SNick Piggin 			gfp_mask & GFP_RECLAIM_MASK, node);
2030db64fe02SNick Piggin 	if (unlikely(!vb))
2031db64fe02SNick Piggin 		return ERR_PTR(-ENOMEM);
2032db64fe02SNick Piggin 
2033db64fe02SNick Piggin 	va = alloc_vmap_area(VMAP_BLOCK_SIZE, VMAP_BLOCK_SIZE,
2034db64fe02SNick Piggin 					VMALLOC_START, VMALLOC_END,
2035869176a0SBaoquan He 					node, gfp_mask,
2036869176a0SBaoquan He 					VMAP_RAM|VMAP_BLOCK);
2037ddf9c6d4STobias Klauser 	if (IS_ERR(va)) {
2038db64fe02SNick Piggin 		kfree(vb);
2039e7d86340SJulia Lawall 		return ERR_CAST(va);
2040db64fe02SNick Piggin 	}
2041db64fe02SNick Piggin 
2042cf725ce2SRoman Pen 	vaddr = vmap_block_vaddr(va->va_start, 0);
2043db64fe02SNick Piggin 	spin_lock_init(&vb->lock);
2044db64fe02SNick Piggin 	vb->va = va;
2045cf725ce2SRoman Pen 	/* At least something should be left free */
2046cf725ce2SRoman Pen 	BUG_ON(VMAP_BBMAP_BITS <= (1UL << order));
2047d76f9954SBaoquan He 	bitmap_zero(vb->used_map, VMAP_BBMAP_BITS);
2048cf725ce2SRoman Pen 	vb->free = VMAP_BBMAP_BITS - (1UL << order);
2049db64fe02SNick Piggin 	vb->dirty = 0;
20507d61bfe8SRoman Pen 	vb->dirty_min = VMAP_BBMAP_BITS;
20517d61bfe8SRoman Pen 	vb->dirty_max = 0;
2052d76f9954SBaoquan He 	bitmap_set(vb->used_map, 0, (1UL << order));
2053db64fe02SNick Piggin 	INIT_LIST_HEAD(&vb->free_list);
2054db64fe02SNick Piggin 
2055*062eacf5SUladzislau Rezki (Sony) 	xa = addr_to_vb_xarray(va->va_start);
2056db64fe02SNick Piggin 	vb_idx = addr_to_vb_idx(va->va_start);
2057*062eacf5SUladzislau Rezki (Sony) 	err = xa_insert(xa, vb_idx, vb, gfp_mask);
20580f14599cSMatthew Wilcox (Oracle) 	if (err) {
20590f14599cSMatthew Wilcox (Oracle) 		kfree(vb);
20600f14599cSMatthew Wilcox (Oracle) 		free_vmap_area(va);
20610f14599cSMatthew Wilcox (Oracle) 		return ERR_PTR(err);
20620f14599cSMatthew Wilcox (Oracle) 	}
2063db64fe02SNick Piggin 
20643f804920SSebastian Andrzej Siewior 	vbq = raw_cpu_ptr(&vmap_block_queue);
2065db64fe02SNick Piggin 	spin_lock(&vbq->lock);
206668ac546fSRoman Pen 	list_add_tail_rcu(&vb->free_list, &vbq->free);
2067db64fe02SNick Piggin 	spin_unlock(&vbq->lock);
2068db64fe02SNick Piggin 
2069cf725ce2SRoman Pen 	return vaddr;
2070db64fe02SNick Piggin }
2071db64fe02SNick Piggin 
2072db64fe02SNick Piggin static void free_vmap_block(struct vmap_block *vb)
2073db64fe02SNick Piggin {
2074db64fe02SNick Piggin 	struct vmap_block *tmp;
2075*062eacf5SUladzislau Rezki (Sony) 	struct xarray *xa;
2076db64fe02SNick Piggin 
2077*062eacf5SUladzislau Rezki (Sony) 	xa = addr_to_vb_xarray(vb->va->va_start);
2078*062eacf5SUladzislau Rezki (Sony) 	tmp = xa_erase(xa, addr_to_vb_idx(vb->va->va_start));
2079db64fe02SNick Piggin 	BUG_ON(tmp != vb);
2080db64fe02SNick Piggin 
2081edd89818SUladzislau Rezki (Sony) 	spin_lock(&vmap_area_lock);
2082edd89818SUladzislau Rezki (Sony) 	unlink_va(vb->va, &vmap_area_root);
2083edd89818SUladzislau Rezki (Sony) 	spin_unlock(&vmap_area_lock);
2084edd89818SUladzislau Rezki (Sony) 
208564141da5SJeremy Fitzhardinge 	free_vmap_area_noflush(vb->va);
208622a3c7d1SLai Jiangshan 	kfree_rcu(vb, rcu_head);
2087db64fe02SNick Piggin }
2088db64fe02SNick Piggin 
208902b709dfSNick Piggin static void purge_fragmented_blocks(int cpu)
209002b709dfSNick Piggin {
209102b709dfSNick Piggin 	LIST_HEAD(purge);
209202b709dfSNick Piggin 	struct vmap_block *vb;
209302b709dfSNick Piggin 	struct vmap_block *n_vb;
209402b709dfSNick Piggin 	struct vmap_block_queue *vbq = &per_cpu(vmap_block_queue, cpu);
209502b709dfSNick Piggin 
209602b709dfSNick Piggin 	rcu_read_lock();
209702b709dfSNick Piggin 	list_for_each_entry_rcu(vb, &vbq->free, free_list) {
209802b709dfSNick Piggin 
209902b709dfSNick Piggin 		if (!(vb->free + vb->dirty == VMAP_BBMAP_BITS && vb->dirty != VMAP_BBMAP_BITS))
210002b709dfSNick Piggin 			continue;
210102b709dfSNick Piggin 
210202b709dfSNick Piggin 		spin_lock(&vb->lock);
210302b709dfSNick Piggin 		if (vb->free + vb->dirty == VMAP_BBMAP_BITS && vb->dirty != VMAP_BBMAP_BITS) {
210402b709dfSNick Piggin 			vb->free = 0; /* prevent further allocs after releasing lock */
210502b709dfSNick Piggin 			vb->dirty = VMAP_BBMAP_BITS; /* prevent purging it again */
21067d61bfe8SRoman Pen 			vb->dirty_min = 0;
21077d61bfe8SRoman Pen 			vb->dirty_max = VMAP_BBMAP_BITS;
210802b709dfSNick Piggin 			spin_lock(&vbq->lock);
210902b709dfSNick Piggin 			list_del_rcu(&vb->free_list);
211002b709dfSNick Piggin 			spin_unlock(&vbq->lock);
211102b709dfSNick Piggin 			spin_unlock(&vb->lock);
211202b709dfSNick Piggin 			list_add_tail(&vb->purge, &purge);
211302b709dfSNick Piggin 		} else
211402b709dfSNick Piggin 			spin_unlock(&vb->lock);
211502b709dfSNick Piggin 	}
211602b709dfSNick Piggin 	rcu_read_unlock();
211702b709dfSNick Piggin 
211802b709dfSNick Piggin 	list_for_each_entry_safe(vb, n_vb, &purge, purge) {
211902b709dfSNick Piggin 		list_del(&vb->purge);
212002b709dfSNick Piggin 		free_vmap_block(vb);
212102b709dfSNick Piggin 	}
212202b709dfSNick Piggin }
212302b709dfSNick Piggin 
212402b709dfSNick Piggin static void purge_fragmented_blocks_allcpus(void)
212502b709dfSNick Piggin {
212602b709dfSNick Piggin 	int cpu;
212702b709dfSNick Piggin 
212802b709dfSNick Piggin 	for_each_possible_cpu(cpu)
212902b709dfSNick Piggin 		purge_fragmented_blocks(cpu);
213002b709dfSNick Piggin }
213102b709dfSNick Piggin 
2132db64fe02SNick Piggin static void *vb_alloc(unsigned long size, gfp_t gfp_mask)
2133db64fe02SNick Piggin {
2134db64fe02SNick Piggin 	struct vmap_block_queue *vbq;
2135db64fe02SNick Piggin 	struct vmap_block *vb;
2136cf725ce2SRoman Pen 	void *vaddr = NULL;
2137db64fe02SNick Piggin 	unsigned int order;
2138db64fe02SNick Piggin 
2139891c49abSAlexander Kuleshov 	BUG_ON(offset_in_page(size));
2140db64fe02SNick Piggin 	BUG_ON(size > PAGE_SIZE*VMAP_MAX_ALLOC);
2141aa91c4d8SJan Kara 	if (WARN_ON(size == 0)) {
2142aa91c4d8SJan Kara 		/*
2143aa91c4d8SJan Kara 		 * Allocating 0 bytes isn't what caller wants since
2144aa91c4d8SJan Kara 		 * get_order(0) returns funny result. Just warn and terminate
2145aa91c4d8SJan Kara 		 * early.
2146aa91c4d8SJan Kara 		 */
2147aa91c4d8SJan Kara 		return NULL;
2148aa91c4d8SJan Kara 	}
2149db64fe02SNick Piggin 	order = get_order(size);
2150db64fe02SNick Piggin 
2151db64fe02SNick Piggin 	rcu_read_lock();
21523f804920SSebastian Andrzej Siewior 	vbq = raw_cpu_ptr(&vmap_block_queue);
2153db64fe02SNick Piggin 	list_for_each_entry_rcu(vb, &vbq->free, free_list) {
2154cf725ce2SRoman Pen 		unsigned long pages_off;
2155db64fe02SNick Piggin 
2156db64fe02SNick Piggin 		spin_lock(&vb->lock);
2157cf725ce2SRoman Pen 		if (vb->free < (1UL << order)) {
2158cf725ce2SRoman Pen 			spin_unlock(&vb->lock);
2159cf725ce2SRoman Pen 			continue;
2160cf725ce2SRoman Pen 		}
216102b709dfSNick Piggin 
2162cf725ce2SRoman Pen 		pages_off = VMAP_BBMAP_BITS - vb->free;
2163cf725ce2SRoman Pen 		vaddr = vmap_block_vaddr(vb->va->va_start, pages_off);
2164db64fe02SNick Piggin 		vb->free -= 1UL << order;
2165d76f9954SBaoquan He 		bitmap_set(vb->used_map, pages_off, (1UL << order));
2166db64fe02SNick Piggin 		if (vb->free == 0) {
2167db64fe02SNick Piggin 			spin_lock(&vbq->lock);
2168de560423SNick Piggin 			list_del_rcu(&vb->free_list);
2169db64fe02SNick Piggin 			spin_unlock(&vbq->lock);
2170db64fe02SNick Piggin 		}
2171cf725ce2SRoman Pen 
2172db64fe02SNick Piggin 		spin_unlock(&vb->lock);
2173db64fe02SNick Piggin 		break;
2174db64fe02SNick Piggin 	}
217502b709dfSNick Piggin 
2176db64fe02SNick Piggin 	rcu_read_unlock();
2177db64fe02SNick Piggin 
2178cf725ce2SRoman Pen 	/* Allocate new block if nothing was found */
2179cf725ce2SRoman Pen 	if (!vaddr)
2180cf725ce2SRoman Pen 		vaddr = new_vmap_block(order, gfp_mask);
2181db64fe02SNick Piggin 
2182cf725ce2SRoman Pen 	return vaddr;
2183db64fe02SNick Piggin }
2184db64fe02SNick Piggin 
218578a0e8c4SChristoph Hellwig static void vb_free(unsigned long addr, unsigned long size)
2186db64fe02SNick Piggin {
2187db64fe02SNick Piggin 	unsigned long offset;
2188db64fe02SNick Piggin 	unsigned int order;
2189db64fe02SNick Piggin 	struct vmap_block *vb;
2190*062eacf5SUladzislau Rezki (Sony) 	struct xarray *xa;
2191db64fe02SNick Piggin 
2192891c49abSAlexander Kuleshov 	BUG_ON(offset_in_page(size));
2193db64fe02SNick Piggin 	BUG_ON(size > PAGE_SIZE*VMAP_MAX_ALLOC);
2194b29acbdcSNick Piggin 
219578a0e8c4SChristoph Hellwig 	flush_cache_vunmap(addr, addr + size);
2196b29acbdcSNick Piggin 
2197db64fe02SNick Piggin 	order = get_order(size);
219878a0e8c4SChristoph Hellwig 	offset = (addr & (VMAP_BLOCK_SIZE - 1)) >> PAGE_SHIFT;
2199*062eacf5SUladzislau Rezki (Sony) 
2200*062eacf5SUladzislau Rezki (Sony) 	xa = addr_to_vb_xarray(addr);
2201*062eacf5SUladzislau Rezki (Sony) 	vb = xa_load(xa, addr_to_vb_idx(addr));
2202*062eacf5SUladzislau Rezki (Sony) 
2203d76f9954SBaoquan He 	spin_lock(&vb->lock);
2204d76f9954SBaoquan He 	bitmap_clear(vb->used_map, offset, (1UL << order));
2205d76f9954SBaoquan He 	spin_unlock(&vb->lock);
2206db64fe02SNick Piggin 
22074ad0ae8cSNicholas Piggin 	vunmap_range_noflush(addr, addr + size);
220864141da5SJeremy Fitzhardinge 
22098e57f8acSVlastimil Babka 	if (debug_pagealloc_enabled_static())
221078a0e8c4SChristoph Hellwig 		flush_tlb_kernel_range(addr, addr + size);
221182a2e924SChintan Pandya 
2212db64fe02SNick Piggin 	spin_lock(&vb->lock);
22137d61bfe8SRoman Pen 
22147d61bfe8SRoman Pen 	/* Expand dirty range */
22157d61bfe8SRoman Pen 	vb->dirty_min = min(vb->dirty_min, offset);
22167d61bfe8SRoman Pen 	vb->dirty_max = max(vb->dirty_max, offset + (1UL << order));
2217d086817dSMinChan Kim 
2218db64fe02SNick Piggin 	vb->dirty += 1UL << order;
2219db64fe02SNick Piggin 	if (vb->dirty == VMAP_BBMAP_BITS) {
2220de560423SNick Piggin 		BUG_ON(vb->free);
2221db64fe02SNick Piggin 		spin_unlock(&vb->lock);
2222db64fe02SNick Piggin 		free_vmap_block(vb);
2223db64fe02SNick Piggin 	} else
2224db64fe02SNick Piggin 		spin_unlock(&vb->lock);
2225db64fe02SNick Piggin }
2226db64fe02SNick Piggin 
2227868b104dSRick Edgecombe static void _vm_unmap_aliases(unsigned long start, unsigned long end, int flush)
2228db64fe02SNick Piggin {
2229db64fe02SNick Piggin 	int cpu;
2230db64fe02SNick Piggin 
22319b463334SJeremy Fitzhardinge 	if (unlikely(!vmap_initialized))
22329b463334SJeremy Fitzhardinge 		return;
22339b463334SJeremy Fitzhardinge 
22345803ed29SChristoph Hellwig 	might_sleep();
22355803ed29SChristoph Hellwig 
2236db64fe02SNick Piggin 	for_each_possible_cpu(cpu) {
2237db64fe02SNick Piggin 		struct vmap_block_queue *vbq = &per_cpu(vmap_block_queue, cpu);
2238db64fe02SNick Piggin 		struct vmap_block *vb;
2239db64fe02SNick Piggin 
2240db64fe02SNick Piggin 		rcu_read_lock();
2241db64fe02SNick Piggin 		list_for_each_entry_rcu(vb, &vbq->free, free_list) {
2242db64fe02SNick Piggin 			spin_lock(&vb->lock);
2243ad216c03SVijayanand Jitta 			if (vb->dirty && vb->dirty != VMAP_BBMAP_BITS) {
22447d61bfe8SRoman Pen 				unsigned long va_start = vb->va->va_start;
2245db64fe02SNick Piggin 				unsigned long s, e;
2246b136be5eSJoonsoo Kim 
22477d61bfe8SRoman Pen 				s = va_start + (vb->dirty_min << PAGE_SHIFT);
22487d61bfe8SRoman Pen 				e = va_start + (vb->dirty_max << PAGE_SHIFT);
2249db64fe02SNick Piggin 
22507d61bfe8SRoman Pen 				start = min(s, start);
22517d61bfe8SRoman Pen 				end   = max(e, end);
22527d61bfe8SRoman Pen 
2253db64fe02SNick Piggin 				flush = 1;
2254db64fe02SNick Piggin 			}
2255db64fe02SNick Piggin 			spin_unlock(&vb->lock);
2256db64fe02SNick Piggin 		}
2257db64fe02SNick Piggin 		rcu_read_unlock();
2258db64fe02SNick Piggin 	}
2259db64fe02SNick Piggin 
2260f9e09977SChristoph Hellwig 	mutex_lock(&vmap_purge_lock);
22610574ecd1SChristoph Hellwig 	purge_fragmented_blocks_allcpus();
22620574ecd1SChristoph Hellwig 	if (!__purge_vmap_area_lazy(start, end) && flush)
22630574ecd1SChristoph Hellwig 		flush_tlb_kernel_range(start, end);
2264f9e09977SChristoph Hellwig 	mutex_unlock(&vmap_purge_lock);
2265db64fe02SNick Piggin }
2266868b104dSRick Edgecombe 
2267868b104dSRick Edgecombe /**
2268868b104dSRick Edgecombe  * vm_unmap_aliases - unmap outstanding lazy aliases in the vmap layer
2269868b104dSRick Edgecombe  *
2270868b104dSRick Edgecombe  * The vmap/vmalloc layer lazily flushes kernel virtual mappings primarily
2271868b104dSRick Edgecombe  * to amortize TLB flushing overheads. What this means is that any page you
2272868b104dSRick Edgecombe  * have now, may, in a former life, have been mapped into kernel virtual
2273868b104dSRick Edgecombe  * address by the vmap layer and so there might be some CPUs with TLB entries
2274868b104dSRick Edgecombe  * still referencing that page (additional to the regular 1:1 kernel mapping).
2275868b104dSRick Edgecombe  *
2276868b104dSRick Edgecombe  * vm_unmap_aliases flushes all such lazy mappings. After it returns, we can
2277868b104dSRick Edgecombe  * be sure that none of the pages we have control over will have any aliases
2278868b104dSRick Edgecombe  * from the vmap layer.
2279868b104dSRick Edgecombe  */
2280868b104dSRick Edgecombe void vm_unmap_aliases(void)
2281868b104dSRick Edgecombe {
2282868b104dSRick Edgecombe 	unsigned long start = ULONG_MAX, end = 0;
2283868b104dSRick Edgecombe 	int flush = 0;
2284868b104dSRick Edgecombe 
2285868b104dSRick Edgecombe 	_vm_unmap_aliases(start, end, flush);
2286868b104dSRick Edgecombe }
2287db64fe02SNick Piggin EXPORT_SYMBOL_GPL(vm_unmap_aliases);
2288db64fe02SNick Piggin 
2289db64fe02SNick Piggin /**
2290db64fe02SNick Piggin  * vm_unmap_ram - unmap linear kernel address space set up by vm_map_ram
2291db64fe02SNick Piggin  * @mem: the pointer returned by vm_map_ram
2292db64fe02SNick Piggin  * @count: the count passed to that vm_map_ram call (cannot unmap partial)
2293db64fe02SNick Piggin  */
2294db64fe02SNick Piggin void vm_unmap_ram(const void *mem, unsigned int count)
2295db64fe02SNick Piggin {
229665ee03c4SGuillermo Julián Moreno 	unsigned long size = (unsigned long)count << PAGE_SHIFT;
22974aff1dc4SAndrey Konovalov 	unsigned long addr = (unsigned long)kasan_reset_tag(mem);
22989c3acf60SChristoph Hellwig 	struct vmap_area *va;
2299db64fe02SNick Piggin 
23005803ed29SChristoph Hellwig 	might_sleep();
2301db64fe02SNick Piggin 	BUG_ON(!addr);
2302db64fe02SNick Piggin 	BUG_ON(addr < VMALLOC_START);
2303db64fe02SNick Piggin 	BUG_ON(addr > VMALLOC_END);
2304a1c0b1a0SShawn Lin 	BUG_ON(!PAGE_ALIGNED(addr));
2305db64fe02SNick Piggin 
2306d98c9e83SAndrey Ryabinin 	kasan_poison_vmalloc(mem, size);
2307d98c9e83SAndrey Ryabinin 
23089c3acf60SChristoph Hellwig 	if (likely(count <= VMAP_MAX_ALLOC)) {
230905e3ff95SChintan Pandya 		debug_check_no_locks_freed(mem, size);
231078a0e8c4SChristoph Hellwig 		vb_free(addr, size);
23119c3acf60SChristoph Hellwig 		return;
23129c3acf60SChristoph Hellwig 	}
23139c3acf60SChristoph Hellwig 
2314edd89818SUladzislau Rezki (Sony) 	va = find_unlink_vmap_area(addr);
231514687619SUladzislau Rezki (Sony) 	if (WARN_ON_ONCE(!va))
231614687619SUladzislau Rezki (Sony) 		return;
231714687619SUladzislau Rezki (Sony) 
231805e3ff95SChintan Pandya 	debug_check_no_locks_freed((void *)va->va_start,
231905e3ff95SChintan Pandya 				    (va->va_end - va->va_start));
23209c3acf60SChristoph Hellwig 	free_unmap_vmap_area(va);
2321db64fe02SNick Piggin }
2322db64fe02SNick Piggin EXPORT_SYMBOL(vm_unmap_ram);
2323db64fe02SNick Piggin 
2324db64fe02SNick Piggin /**
2325db64fe02SNick Piggin  * vm_map_ram - map pages linearly into kernel virtual address (vmalloc space)
2326db64fe02SNick Piggin  * @pages: an array of pointers to the pages to be mapped
2327db64fe02SNick Piggin  * @count: number of pages
2328db64fe02SNick Piggin  * @node: prefer to allocate data structures on this node
2329e99c97adSRandy Dunlap  *
233036437638SGioh Kim  * If you use this function for less than VMAP_MAX_ALLOC pages, it could be
233136437638SGioh Kim  * faster than vmap so it's good.  But if you mix long-life and short-life
233236437638SGioh Kim  * objects with vm_map_ram(), it could consume lots of address space through
233336437638SGioh Kim  * fragmentation (especially on a 32bit machine).  You could see failures in
233436437638SGioh Kim  * the end.  Please use this function for short-lived objects.
233536437638SGioh Kim  *
2336e99c97adSRandy Dunlap  * Returns: a pointer to the address that has been mapped, or %NULL on failure
2337db64fe02SNick Piggin  */
2338d4efd79aSChristoph Hellwig void *vm_map_ram(struct page **pages, unsigned int count, int node)
2339db64fe02SNick Piggin {
234065ee03c4SGuillermo Julián Moreno 	unsigned long size = (unsigned long)count << PAGE_SHIFT;
2341db64fe02SNick Piggin 	unsigned long addr;
2342db64fe02SNick Piggin 	void *mem;
2343db64fe02SNick Piggin 
2344db64fe02SNick Piggin 	if (likely(count <= VMAP_MAX_ALLOC)) {
2345db64fe02SNick Piggin 		mem = vb_alloc(size, GFP_KERNEL);
2346db64fe02SNick Piggin 		if (IS_ERR(mem))
2347db64fe02SNick Piggin 			return NULL;
2348db64fe02SNick Piggin 		addr = (unsigned long)mem;
2349db64fe02SNick Piggin 	} else {
2350db64fe02SNick Piggin 		struct vmap_area *va;
2351db64fe02SNick Piggin 		va = alloc_vmap_area(size, PAGE_SIZE,
2352869176a0SBaoquan He 				VMALLOC_START, VMALLOC_END,
2353869176a0SBaoquan He 				node, GFP_KERNEL, VMAP_RAM);
2354db64fe02SNick Piggin 		if (IS_ERR(va))
2355db64fe02SNick Piggin 			return NULL;
2356db64fe02SNick Piggin 
2357db64fe02SNick Piggin 		addr = va->va_start;
2358db64fe02SNick Piggin 		mem = (void *)addr;
2359db64fe02SNick Piggin 	}
2360d98c9e83SAndrey Ryabinin 
2361b67177ecSNicholas Piggin 	if (vmap_pages_range(addr, addr + size, PAGE_KERNEL,
2362b67177ecSNicholas Piggin 				pages, PAGE_SHIFT) < 0) {
2363db64fe02SNick Piggin 		vm_unmap_ram(mem, count);
2364db64fe02SNick Piggin 		return NULL;
2365db64fe02SNick Piggin 	}
2366b67177ecSNicholas Piggin 
236723689e91SAndrey Konovalov 	/*
236823689e91SAndrey Konovalov 	 * Mark the pages as accessible, now that they are mapped.
236923689e91SAndrey Konovalov 	 * With hardware tag-based KASAN, marking is skipped for
237023689e91SAndrey Konovalov 	 * non-VM_ALLOC mappings, see __kasan_unpoison_vmalloc().
237123689e91SAndrey Konovalov 	 */
2372f6e39794SAndrey Konovalov 	mem = kasan_unpoison_vmalloc(mem, size, KASAN_VMALLOC_PROT_NORMAL);
237319f1c3acSAndrey Konovalov 
2374db64fe02SNick Piggin 	return mem;
2375db64fe02SNick Piggin }
2376db64fe02SNick Piggin EXPORT_SYMBOL(vm_map_ram);
2377db64fe02SNick Piggin 
23784341fa45SJoonsoo Kim static struct vm_struct *vmlist __initdata;
237992eac168SMike Rapoport 
2380121e6f32SNicholas Piggin static inline unsigned int vm_area_page_order(struct vm_struct *vm)
2381121e6f32SNicholas Piggin {
2382121e6f32SNicholas Piggin #ifdef CONFIG_HAVE_ARCH_HUGE_VMALLOC
2383121e6f32SNicholas Piggin 	return vm->page_order;
2384121e6f32SNicholas Piggin #else
2385121e6f32SNicholas Piggin 	return 0;
2386121e6f32SNicholas Piggin #endif
2387121e6f32SNicholas Piggin }
2388121e6f32SNicholas Piggin 
2389121e6f32SNicholas Piggin static inline void set_vm_area_page_order(struct vm_struct *vm, unsigned int order)
2390121e6f32SNicholas Piggin {
2391121e6f32SNicholas Piggin #ifdef CONFIG_HAVE_ARCH_HUGE_VMALLOC
2392121e6f32SNicholas Piggin 	vm->page_order = order;
2393121e6f32SNicholas Piggin #else
2394121e6f32SNicholas Piggin 	BUG_ON(order != 0);
2395121e6f32SNicholas Piggin #endif
2396121e6f32SNicholas Piggin }
2397121e6f32SNicholas Piggin 
2398f0aa6617STejun Heo /**
2399be9b7335SNicolas Pitre  * vm_area_add_early - add vmap area early during boot
2400be9b7335SNicolas Pitre  * @vm: vm_struct to add
2401be9b7335SNicolas Pitre  *
2402be9b7335SNicolas Pitre  * This function is used to add fixed kernel vm area to vmlist before
2403be9b7335SNicolas Pitre  * vmalloc_init() is called.  @vm->addr, @vm->size, and @vm->flags
2404be9b7335SNicolas Pitre  * should contain proper values and the other fields should be zero.
2405be9b7335SNicolas Pitre  *
2406be9b7335SNicolas Pitre  * DO NOT USE THIS FUNCTION UNLESS YOU KNOW WHAT YOU'RE DOING.
2407be9b7335SNicolas Pitre  */
2408be9b7335SNicolas Pitre void __init vm_area_add_early(struct vm_struct *vm)
2409be9b7335SNicolas Pitre {
2410be9b7335SNicolas Pitre 	struct vm_struct *tmp, **p;
2411be9b7335SNicolas Pitre 
2412be9b7335SNicolas Pitre 	BUG_ON(vmap_initialized);
2413be9b7335SNicolas Pitre 	for (p = &vmlist; (tmp = *p) != NULL; p = &tmp->next) {
2414be9b7335SNicolas Pitre 		if (tmp->addr >= vm->addr) {
2415be9b7335SNicolas Pitre 			BUG_ON(tmp->addr < vm->addr + vm->size);
2416be9b7335SNicolas Pitre 			break;
2417be9b7335SNicolas Pitre 		} else
2418be9b7335SNicolas Pitre 			BUG_ON(tmp->addr + tmp->size > vm->addr);
2419be9b7335SNicolas Pitre 	}
2420be9b7335SNicolas Pitre 	vm->next = *p;
2421be9b7335SNicolas Pitre 	*p = vm;
2422be9b7335SNicolas Pitre }
2423be9b7335SNicolas Pitre 
2424be9b7335SNicolas Pitre /**
2425f0aa6617STejun Heo  * vm_area_register_early - register vmap area early during boot
2426f0aa6617STejun Heo  * @vm: vm_struct to register
2427c0c0a293STejun Heo  * @align: requested alignment
2428f0aa6617STejun Heo  *
2429f0aa6617STejun Heo  * This function is used to register kernel vm area before
2430f0aa6617STejun Heo  * vmalloc_init() is called.  @vm->size and @vm->flags should contain
2431f0aa6617STejun Heo  * proper values on entry and other fields should be zero.  On return,
2432f0aa6617STejun Heo  * vm->addr contains the allocated address.
2433f0aa6617STejun Heo  *
2434f0aa6617STejun Heo  * DO NOT USE THIS FUNCTION UNLESS YOU KNOW WHAT YOU'RE DOING.
2435f0aa6617STejun Heo  */
2436c0c0a293STejun Heo void __init vm_area_register_early(struct vm_struct *vm, size_t align)
2437f0aa6617STejun Heo {
24380eb68437SKefeng Wang 	unsigned long addr = ALIGN(VMALLOC_START, align);
24390eb68437SKefeng Wang 	struct vm_struct *cur, **p;
2440f0aa6617STejun Heo 
24410eb68437SKefeng Wang 	BUG_ON(vmap_initialized);
2442c0c0a293STejun Heo 
24430eb68437SKefeng Wang 	for (p = &vmlist; (cur = *p) != NULL; p = &cur->next) {
24440eb68437SKefeng Wang 		if ((unsigned long)cur->addr - addr >= vm->size)
24450eb68437SKefeng Wang 			break;
24460eb68437SKefeng Wang 		addr = ALIGN((unsigned long)cur->addr + cur->size, align);
24470eb68437SKefeng Wang 	}
24480eb68437SKefeng Wang 
24490eb68437SKefeng Wang 	BUG_ON(addr > VMALLOC_END - vm->size);
2450c0c0a293STejun Heo 	vm->addr = (void *)addr;
24510eb68437SKefeng Wang 	vm->next = *p;
24520eb68437SKefeng Wang 	*p = vm;
24533252b1d8SKefeng Wang 	kasan_populate_early_vm_area_shadow(vm->addr, vm->size);
2454f0aa6617STejun Heo }
2455f0aa6617STejun Heo 
245668ad4a33SUladzislau Rezki (Sony) static void vmap_init_free_space(void)
245768ad4a33SUladzislau Rezki (Sony) {
245868ad4a33SUladzislau Rezki (Sony) 	unsigned long vmap_start = 1;
245968ad4a33SUladzislau Rezki (Sony) 	const unsigned long vmap_end = ULONG_MAX;
246068ad4a33SUladzislau Rezki (Sony) 	struct vmap_area *busy, *free;
246168ad4a33SUladzislau Rezki (Sony) 
246268ad4a33SUladzislau Rezki (Sony) 	/*
246368ad4a33SUladzislau Rezki (Sony) 	 *     B     F     B     B     B     F
246468ad4a33SUladzislau Rezki (Sony) 	 * -|-----|.....|-----|-----|-----|.....|-
246568ad4a33SUladzislau Rezki (Sony) 	 *  |           The KVA space           |
246668ad4a33SUladzislau Rezki (Sony) 	 *  |<--------------------------------->|
246768ad4a33SUladzislau Rezki (Sony) 	 */
246868ad4a33SUladzislau Rezki (Sony) 	list_for_each_entry(busy, &vmap_area_list, list) {
246968ad4a33SUladzislau Rezki (Sony) 		if (busy->va_start - vmap_start > 0) {
247068ad4a33SUladzislau Rezki (Sony) 			free = kmem_cache_zalloc(vmap_area_cachep, GFP_NOWAIT);
247168ad4a33SUladzislau Rezki (Sony) 			if (!WARN_ON_ONCE(!free)) {
247268ad4a33SUladzislau Rezki (Sony) 				free->va_start = vmap_start;
247368ad4a33SUladzislau Rezki (Sony) 				free->va_end = busy->va_start;
247468ad4a33SUladzislau Rezki (Sony) 
247568ad4a33SUladzislau Rezki (Sony) 				insert_vmap_area_augment(free, NULL,
247668ad4a33SUladzislau Rezki (Sony) 					&free_vmap_area_root,
247768ad4a33SUladzislau Rezki (Sony) 						&free_vmap_area_list);
247868ad4a33SUladzislau Rezki (Sony) 			}
247968ad4a33SUladzislau Rezki (Sony) 		}
248068ad4a33SUladzislau Rezki (Sony) 
248168ad4a33SUladzislau Rezki (Sony) 		vmap_start = busy->va_end;
248268ad4a33SUladzislau Rezki (Sony) 	}
248368ad4a33SUladzislau Rezki (Sony) 
248468ad4a33SUladzislau Rezki (Sony) 	if (vmap_end - vmap_start > 0) {
248568ad4a33SUladzislau Rezki (Sony) 		free = kmem_cache_zalloc(vmap_area_cachep, GFP_NOWAIT);
248668ad4a33SUladzislau Rezki (Sony) 		if (!WARN_ON_ONCE(!free)) {
248768ad4a33SUladzislau Rezki (Sony) 			free->va_start = vmap_start;
248868ad4a33SUladzislau Rezki (Sony) 			free->va_end = vmap_end;
248968ad4a33SUladzislau Rezki (Sony) 
249068ad4a33SUladzislau Rezki (Sony) 			insert_vmap_area_augment(free, NULL,
249168ad4a33SUladzislau Rezki (Sony) 				&free_vmap_area_root,
249268ad4a33SUladzislau Rezki (Sony) 					&free_vmap_area_list);
249368ad4a33SUladzislau Rezki (Sony) 		}
249468ad4a33SUladzislau Rezki (Sony) 	}
249568ad4a33SUladzislau Rezki (Sony) }
249668ad4a33SUladzislau Rezki (Sony) 
2497e36176beSUladzislau Rezki (Sony) static inline void setup_vmalloc_vm_locked(struct vm_struct *vm,
2498e36176beSUladzislau Rezki (Sony) 	struct vmap_area *va, unsigned long flags, const void *caller)
2499cf88c790STejun Heo {
2500cf88c790STejun Heo 	vm->flags = flags;
2501cf88c790STejun Heo 	vm->addr = (void *)va->va_start;
2502cf88c790STejun Heo 	vm->size = va->va_end - va->va_start;
2503cf88c790STejun Heo 	vm->caller = caller;
2504db1aecafSMinchan Kim 	va->vm = vm;
2505e36176beSUladzislau Rezki (Sony) }
2506e36176beSUladzislau Rezki (Sony) 
2507e36176beSUladzislau Rezki (Sony) static void setup_vmalloc_vm(struct vm_struct *vm, struct vmap_area *va,
2508e36176beSUladzislau Rezki (Sony) 			      unsigned long flags, const void *caller)
2509e36176beSUladzislau Rezki (Sony) {
2510e36176beSUladzislau Rezki (Sony) 	spin_lock(&vmap_area_lock);
2511e36176beSUladzislau Rezki (Sony) 	setup_vmalloc_vm_locked(vm, va, flags, caller);
2512c69480adSJoonsoo Kim 	spin_unlock(&vmap_area_lock);
2513f5252e00SMitsuo Hayasaka }
2514cf88c790STejun Heo 
251520fc02b4SZhang Yanfei static void clear_vm_uninitialized_flag(struct vm_struct *vm)
2516f5252e00SMitsuo Hayasaka {
2517d4033afdSJoonsoo Kim 	/*
251820fc02b4SZhang Yanfei 	 * Before removing VM_UNINITIALIZED,
2519d4033afdSJoonsoo Kim 	 * we should make sure that vm has proper values.
2520d4033afdSJoonsoo Kim 	 * Pair with smp_rmb() in show_numa_info().
2521d4033afdSJoonsoo Kim 	 */
2522d4033afdSJoonsoo Kim 	smp_wmb();
252320fc02b4SZhang Yanfei 	vm->flags &= ~VM_UNINITIALIZED;
2524cf88c790STejun Heo }
2525cf88c790STejun Heo 
2526db64fe02SNick Piggin static struct vm_struct *__get_vm_area_node(unsigned long size,
25277ca3027bSDaniel Axtens 		unsigned long align, unsigned long shift, unsigned long flags,
25287ca3027bSDaniel Axtens 		unsigned long start, unsigned long end, int node,
25297ca3027bSDaniel Axtens 		gfp_t gfp_mask, const void *caller)
2530db64fe02SNick Piggin {
25310006526dSKautuk Consul 	struct vmap_area *va;
2532db64fe02SNick Piggin 	struct vm_struct *area;
2533d98c9e83SAndrey Ryabinin 	unsigned long requested_size = size;
25341da177e4SLinus Torvalds 
253552fd24caSGiridhar Pemmasani 	BUG_ON(in_interrupt());
25367ca3027bSDaniel Axtens 	size = ALIGN(size, 1ul << shift);
253731be8309SOGAWA Hirofumi 	if (unlikely(!size))
253831be8309SOGAWA Hirofumi 		return NULL;
25391da177e4SLinus Torvalds 
2540252e5c6eSzijun_hu 	if (flags & VM_IOREMAP)
2541252e5c6eSzijun_hu 		align = 1ul << clamp_t(int, get_count_order_long(size),
2542252e5c6eSzijun_hu 				       PAGE_SHIFT, IOREMAP_MAX_ORDER);
2543252e5c6eSzijun_hu 
2544cf88c790STejun Heo 	area = kzalloc_node(sizeof(*area), gfp_mask & GFP_RECLAIM_MASK, node);
25451da177e4SLinus Torvalds 	if (unlikely(!area))
25461da177e4SLinus Torvalds 		return NULL;
25471da177e4SLinus Torvalds 
254871394fe5SAndrey Ryabinin 	if (!(flags & VM_NO_GUARD))
25491da177e4SLinus Torvalds 		size += PAGE_SIZE;
25501da177e4SLinus Torvalds 
2551869176a0SBaoquan He 	va = alloc_vmap_area(size, align, start, end, node, gfp_mask, 0);
2552db64fe02SNick Piggin 	if (IS_ERR(va)) {
2553db64fe02SNick Piggin 		kfree(area);
2554db64fe02SNick Piggin 		return NULL;
25551da177e4SLinus Torvalds 	}
25561da177e4SLinus Torvalds 
2557d98c9e83SAndrey Ryabinin 	setup_vmalloc_vm(area, va, flags, caller);
25583c5c3cfbSDaniel Axtens 
255919f1c3acSAndrey Konovalov 	/*
256019f1c3acSAndrey Konovalov 	 * Mark pages for non-VM_ALLOC mappings as accessible. Do it now as a
256119f1c3acSAndrey Konovalov 	 * best-effort approach, as they can be mapped outside of vmalloc code.
256219f1c3acSAndrey Konovalov 	 * For VM_ALLOC mappings, the pages are marked as accessible after
256319f1c3acSAndrey Konovalov 	 * getting mapped in __vmalloc_node_range().
256423689e91SAndrey Konovalov 	 * With hardware tag-based KASAN, marking is skipped for
256523689e91SAndrey Konovalov 	 * non-VM_ALLOC mappings, see __kasan_unpoison_vmalloc().
256619f1c3acSAndrey Konovalov 	 */
256719f1c3acSAndrey Konovalov 	if (!(flags & VM_ALLOC))
256823689e91SAndrey Konovalov 		area->addr = kasan_unpoison_vmalloc(area->addr, requested_size,
2569f6e39794SAndrey Konovalov 						    KASAN_VMALLOC_PROT_NORMAL);
25701d96320fSAndrey Konovalov 
25711da177e4SLinus Torvalds 	return area;
25721da177e4SLinus Torvalds }
25731da177e4SLinus Torvalds 
2574c2968612SBenjamin Herrenschmidt struct vm_struct *__get_vm_area_caller(unsigned long size, unsigned long flags,
2575c2968612SBenjamin Herrenschmidt 				       unsigned long start, unsigned long end,
25765e6cafc8SMarek Szyprowski 				       const void *caller)
2577c2968612SBenjamin Herrenschmidt {
25787ca3027bSDaniel Axtens 	return __get_vm_area_node(size, 1, PAGE_SHIFT, flags, start, end,
25797ca3027bSDaniel Axtens 				  NUMA_NO_NODE, GFP_KERNEL, caller);
2580c2968612SBenjamin Herrenschmidt }
2581c2968612SBenjamin Herrenschmidt 
25821da177e4SLinus Torvalds /**
2583183ff22bSSimon Arlott  * get_vm_area - reserve a contiguous kernel virtual area
25841da177e4SLinus Torvalds  * @size:	 size of the area
25851da177e4SLinus Torvalds  * @flags:	 %VM_IOREMAP for I/O mappings or VM_ALLOC
25861da177e4SLinus Torvalds  *
25871da177e4SLinus Torvalds  * Search an area of @size in the kernel virtual mapping area,
25881da177e4SLinus Torvalds  * and reserved it for out purposes.  Returns the area descriptor
25891da177e4SLinus Torvalds  * on success or %NULL on failure.
2590a862f68aSMike Rapoport  *
2591a862f68aSMike Rapoport  * Return: the area descriptor on success or %NULL on failure.
25921da177e4SLinus Torvalds  */
25931da177e4SLinus Torvalds struct vm_struct *get_vm_area(unsigned long size, unsigned long flags)
25941da177e4SLinus Torvalds {
25957ca3027bSDaniel Axtens 	return __get_vm_area_node(size, 1, PAGE_SHIFT, flags,
25967ca3027bSDaniel Axtens 				  VMALLOC_START, VMALLOC_END,
259700ef2d2fSDavid Rientjes 				  NUMA_NO_NODE, GFP_KERNEL,
259800ef2d2fSDavid Rientjes 				  __builtin_return_address(0));
259923016969SChristoph Lameter }
260023016969SChristoph Lameter 
260123016969SChristoph Lameter struct vm_struct *get_vm_area_caller(unsigned long size, unsigned long flags,
26025e6cafc8SMarek Szyprowski 				const void *caller)
260323016969SChristoph Lameter {
26047ca3027bSDaniel Axtens 	return __get_vm_area_node(size, 1, PAGE_SHIFT, flags,
26057ca3027bSDaniel Axtens 				  VMALLOC_START, VMALLOC_END,
260600ef2d2fSDavid Rientjes 				  NUMA_NO_NODE, GFP_KERNEL, caller);
26071da177e4SLinus Torvalds }
26081da177e4SLinus Torvalds 
2609e9da6e99SMarek Szyprowski /**
2610e9da6e99SMarek Szyprowski  * find_vm_area - find a continuous kernel virtual area
2611e9da6e99SMarek Szyprowski  * @addr:	  base address
2612e9da6e99SMarek Szyprowski  *
2613e9da6e99SMarek Szyprowski  * Search for the kernel VM area starting at @addr, and return it.
2614e9da6e99SMarek Szyprowski  * It is up to the caller to do all required locking to keep the returned
2615e9da6e99SMarek Szyprowski  * pointer valid.
2616a862f68aSMike Rapoport  *
261774640617SHui Su  * Return: the area descriptor on success or %NULL on failure.
2618e9da6e99SMarek Szyprowski  */
2619e9da6e99SMarek Szyprowski struct vm_struct *find_vm_area(const void *addr)
262083342314SNick Piggin {
2621db64fe02SNick Piggin 	struct vmap_area *va;
262283342314SNick Piggin 
2623db64fe02SNick Piggin 	va = find_vmap_area((unsigned long)addr);
2624688fcbfcSPengfei Li 	if (!va)
26257856dfebSAndi Kleen 		return NULL;
2626688fcbfcSPengfei Li 
2627688fcbfcSPengfei Li 	return va->vm;
26287856dfebSAndi Kleen }
26297856dfebSAndi Kleen 
26301da177e4SLinus Torvalds /**
2631183ff22bSSimon Arlott  * remove_vm_area - find and remove a continuous kernel virtual area
26321da177e4SLinus Torvalds  * @addr:	    base address
26331da177e4SLinus Torvalds  *
26341da177e4SLinus Torvalds  * Search for the kernel VM area starting at @addr, and remove it.
26351da177e4SLinus Torvalds  * This function returns the found VM area, but using it is NOT safe
26367856dfebSAndi Kleen  * on SMP machines, except for its size or flags.
2637a862f68aSMike Rapoport  *
263874640617SHui Su  * Return: the area descriptor on success or %NULL on failure.
26391da177e4SLinus Torvalds  */
2640b3bdda02SChristoph Lameter struct vm_struct *remove_vm_area(const void *addr)
26411da177e4SLinus Torvalds {
2642db64fe02SNick Piggin 	struct vmap_area *va;
264375c59ce7SChristoph Hellwig 	struct vm_struct *vm;
2644db64fe02SNick Piggin 
26455803ed29SChristoph Hellwig 	might_sleep();
26465803ed29SChristoph Hellwig 
264717d3ef43SChristoph Hellwig 	if (WARN(!PAGE_ALIGNED(addr), "Trying to vfree() bad address (%p)\n",
264817d3ef43SChristoph Hellwig 			addr))
2649db64fe02SNick Piggin 		return NULL;
265017d3ef43SChristoph Hellwig 
265175c59ce7SChristoph Hellwig 	va = find_unlink_vmap_area((unsigned long)addr);
265275c59ce7SChristoph Hellwig 	if (!va || !va->vm)
265375c59ce7SChristoph Hellwig 		return NULL;
265475c59ce7SChristoph Hellwig 	vm = va->vm;
265517d3ef43SChristoph Hellwig 
265617d3ef43SChristoph Hellwig 	debug_check_no_locks_freed(vm->addr, get_vm_area_size(vm));
265717d3ef43SChristoph Hellwig 	debug_check_no_obj_freed(vm->addr, get_vm_area_size(vm));
265875c59ce7SChristoph Hellwig 	kasan_free_module_shadow(vm);
265917d3ef43SChristoph Hellwig 	kasan_poison_vmalloc(vm->addr, get_vm_area_size(vm));
266017d3ef43SChristoph Hellwig 
266175c59ce7SChristoph Hellwig 	free_unmap_vmap_area(va);
266275c59ce7SChristoph Hellwig 	return vm;
26631da177e4SLinus Torvalds }
26641da177e4SLinus Torvalds 
2665868b104dSRick Edgecombe static inline void set_area_direct_map(const struct vm_struct *area,
2666868b104dSRick Edgecombe 				       int (*set_direct_map)(struct page *page))
2667868b104dSRick Edgecombe {
2668868b104dSRick Edgecombe 	int i;
2669868b104dSRick Edgecombe 
2670121e6f32SNicholas Piggin 	/* HUGE_VMALLOC passes small pages to set_direct_map */
2671868b104dSRick Edgecombe 	for (i = 0; i < area->nr_pages; i++)
2672868b104dSRick Edgecombe 		if (page_address(area->pages[i]))
2673868b104dSRick Edgecombe 			set_direct_map(area->pages[i]);
2674868b104dSRick Edgecombe }
2675868b104dSRick Edgecombe 
26769e5fa0aeSChristoph Hellwig /*
26779e5fa0aeSChristoph Hellwig  * Flush the vm mapping and reset the direct map.
26789e5fa0aeSChristoph Hellwig  */
26799e5fa0aeSChristoph Hellwig static void vm_reset_perms(struct vm_struct *area)
2680868b104dSRick Edgecombe {
2681868b104dSRick Edgecombe 	unsigned long start = ULONG_MAX, end = 0;
2682121e6f32SNicholas Piggin 	unsigned int page_order = vm_area_page_order(area);
268331e67340SRick Edgecombe 	int flush_dmap = 0;
2684868b104dSRick Edgecombe 	int i;
2685868b104dSRick Edgecombe 
2686868b104dSRick Edgecombe 	/*
26879e5fa0aeSChristoph Hellwig 	 * Find the start and end range of the direct mappings to make sure that
2688868b104dSRick Edgecombe 	 * the vm_unmap_aliases() flush includes the direct map.
2689868b104dSRick Edgecombe 	 */
2690121e6f32SNicholas Piggin 	for (i = 0; i < area->nr_pages; i += 1U << page_order) {
26918e41f872SRick Edgecombe 		unsigned long addr = (unsigned long)page_address(area->pages[i]);
26929e5fa0aeSChristoph Hellwig 
26938e41f872SRick Edgecombe 		if (addr) {
2694121e6f32SNicholas Piggin 			unsigned long page_size;
2695121e6f32SNicholas Piggin 
2696121e6f32SNicholas Piggin 			page_size = PAGE_SIZE << page_order;
2697868b104dSRick Edgecombe 			start = min(addr, start);
2698121e6f32SNicholas Piggin 			end = max(addr + page_size, end);
269931e67340SRick Edgecombe 			flush_dmap = 1;
2700868b104dSRick Edgecombe 		}
2701868b104dSRick Edgecombe 	}
2702868b104dSRick Edgecombe 
2703868b104dSRick Edgecombe 	/*
2704868b104dSRick Edgecombe 	 * Set direct map to something invalid so that it won't be cached if
2705868b104dSRick Edgecombe 	 * there are any accesses after the TLB flush, then flush the TLB and
2706868b104dSRick Edgecombe 	 * reset the direct map permissions to the default.
2707868b104dSRick Edgecombe 	 */
2708868b104dSRick Edgecombe 	set_area_direct_map(area, set_direct_map_invalid_noflush);
270931e67340SRick Edgecombe 	_vm_unmap_aliases(start, end, flush_dmap);
2710868b104dSRick Edgecombe 	set_area_direct_map(area, set_direct_map_default_noflush);
2711868b104dSRick Edgecombe }
2712868b104dSRick Edgecombe 
2713208162f4SChristoph Hellwig static void delayed_vfree_work(struct work_struct *w)
27141da177e4SLinus Torvalds {
2715208162f4SChristoph Hellwig 	struct vfree_deferred *p = container_of(w, struct vfree_deferred, wq);
2716208162f4SChristoph Hellwig 	struct llist_node *t, *llnode;
27171da177e4SLinus Torvalds 
2718208162f4SChristoph Hellwig 	llist_for_each_safe(llnode, t, llist_del_all(&p->list))
27195d3d31d6SChristoph Hellwig 		vfree(llnode);
2720bf22e37aSAndrey Ryabinin }
2721bf22e37aSAndrey Ryabinin 
2722bf22e37aSAndrey Ryabinin /**
2723bf22e37aSAndrey Ryabinin  * vfree_atomic - release memory allocated by vmalloc()
2724bf22e37aSAndrey Ryabinin  * @addr:	  memory base address
2725bf22e37aSAndrey Ryabinin  *
2726bf22e37aSAndrey Ryabinin  * This one is just like vfree() but can be called in any atomic context
2727bf22e37aSAndrey Ryabinin  * except NMIs.
2728bf22e37aSAndrey Ryabinin  */
2729bf22e37aSAndrey Ryabinin void vfree_atomic(const void *addr)
2730bf22e37aSAndrey Ryabinin {
273101e2e839SChristoph Hellwig 	struct vfree_deferred *p = raw_cpu_ptr(&vfree_deferred);
2732bf22e37aSAndrey Ryabinin 
273301e2e839SChristoph Hellwig 	BUG_ON(in_nmi());
2734bf22e37aSAndrey Ryabinin 	kmemleak_free(addr);
2735bf22e37aSAndrey Ryabinin 
273601e2e839SChristoph Hellwig 	/*
273701e2e839SChristoph Hellwig 	 * Use raw_cpu_ptr() because this can be called from preemptible
273801e2e839SChristoph Hellwig 	 * context. Preemption is absolutely fine here, because the llist_add()
273901e2e839SChristoph Hellwig 	 * implementation is lockless, so it works even if we are adding to
274001e2e839SChristoph Hellwig 	 * another cpu's list. schedule_work() should be fine with this too.
274101e2e839SChristoph Hellwig 	 */
274201e2e839SChristoph Hellwig 	if (addr && llist_add((struct llist_node *)addr, &p->list))
274301e2e839SChristoph Hellwig 		schedule_work(&p->wq);
2744c67dc624SRoman Penyaev }
2745c67dc624SRoman Penyaev 
27461da177e4SLinus Torvalds /**
2747fa307474SMatthew Wilcox (Oracle)  * vfree - Release memory allocated by vmalloc()
2748fa307474SMatthew Wilcox (Oracle)  * @addr:  Memory base address
27491da177e4SLinus Torvalds  *
2750fa307474SMatthew Wilcox (Oracle)  * Free the virtually continuous memory area starting at @addr, as obtained
2751fa307474SMatthew Wilcox (Oracle)  * from one of the vmalloc() family of APIs.  This will usually also free the
2752fa307474SMatthew Wilcox (Oracle)  * physical memory underlying the virtual allocation, but that memory is
2753fa307474SMatthew Wilcox (Oracle)  * reference counted, so it will not be freed until the last user goes away.
27541da177e4SLinus Torvalds  *
2755fa307474SMatthew Wilcox (Oracle)  * If @addr is NULL, no operation is performed.
275632fcfd40SAl Viro  *
2757fa307474SMatthew Wilcox (Oracle)  * Context:
27583ca4ea3aSAndrey Ryabinin  * May sleep if called *not* from interrupt context.
2759fa307474SMatthew Wilcox (Oracle)  * Must not be called in NMI context (strictly speaking, it could be
2760fa307474SMatthew Wilcox (Oracle)  * if we have CONFIG_ARCH_HAVE_NMI_SAFE_CMPXCHG, but making the calling
2761f0953a1bSIngo Molnar  * conventions for vfree() arch-dependent would be a really bad idea).
27621da177e4SLinus Torvalds  */
2763b3bdda02SChristoph Lameter void vfree(const void *addr)
27641da177e4SLinus Torvalds {
276579311c1fSChristoph Hellwig 	struct vm_struct *vm;
276679311c1fSChristoph Hellwig 	int i;
276779311c1fSChristoph Hellwig 
276801e2e839SChristoph Hellwig 	if (unlikely(in_interrupt())) {
276901e2e839SChristoph Hellwig 		vfree_atomic(addr);
277032fcfd40SAl Viro 		return;
277101e2e839SChristoph Hellwig 	}
277201e2e839SChristoph Hellwig 
27731da177e4SLinus Torvalds 	BUG_ON(in_nmi());
277489219d37SCatalin Marinas 	kmemleak_free(addr);
277501e2e839SChristoph Hellwig 	might_sleep();
277632fcfd40SAl Viro 
2777bf22e37aSAndrey Ryabinin 	if (!addr)
2778bf22e37aSAndrey Ryabinin 		return;
2779c67dc624SRoman Penyaev 
278079311c1fSChristoph Hellwig 	vm = remove_vm_area(addr);
278179311c1fSChristoph Hellwig 	if (unlikely(!vm)) {
278279311c1fSChristoph Hellwig 		WARN(1, KERN_ERR "Trying to vfree() nonexistent vm area (%p)\n",
278379311c1fSChristoph Hellwig 				addr);
278479311c1fSChristoph Hellwig 		return;
278579311c1fSChristoph Hellwig 	}
278679311c1fSChristoph Hellwig 
27879e5fa0aeSChristoph Hellwig 	if (unlikely(vm->flags & VM_FLUSH_RESET_PERMS))
27889e5fa0aeSChristoph Hellwig 		vm_reset_perms(vm);
278979311c1fSChristoph Hellwig 	for (i = 0; i < vm->nr_pages; i++) {
279079311c1fSChristoph Hellwig 		struct page *page = vm->pages[i];
279179311c1fSChristoph Hellwig 
279279311c1fSChristoph Hellwig 		BUG_ON(!page);
279379311c1fSChristoph Hellwig 		mod_memcg_page_state(page, MEMCG_VMALLOC, -1);
279479311c1fSChristoph Hellwig 		/*
279579311c1fSChristoph Hellwig 		 * High-order allocs for huge vmallocs are split, so
279679311c1fSChristoph Hellwig 		 * can be freed as an array of order-0 allocations
279779311c1fSChristoph Hellwig 		 */
2798dcc1be11SLorenzo Stoakes 		__free_page(page);
279979311c1fSChristoph Hellwig 		cond_resched();
280079311c1fSChristoph Hellwig 	}
280179311c1fSChristoph Hellwig 	atomic_long_sub(vm->nr_pages, &nr_vmalloc_pages);
280279311c1fSChristoph Hellwig 	kvfree(vm->pages);
280379311c1fSChristoph Hellwig 	kfree(vm);
28041da177e4SLinus Torvalds }
28051da177e4SLinus Torvalds EXPORT_SYMBOL(vfree);
28061da177e4SLinus Torvalds 
28071da177e4SLinus Torvalds /**
28081da177e4SLinus Torvalds  * vunmap - release virtual mapping obtained by vmap()
28091da177e4SLinus Torvalds  * @addr:   memory base address
28101da177e4SLinus Torvalds  *
28111da177e4SLinus Torvalds  * Free the virtually contiguous memory area starting at @addr,
28121da177e4SLinus Torvalds  * which was created from the page array passed to vmap().
28131da177e4SLinus Torvalds  *
281480e93effSPekka Enberg  * Must not be called in interrupt context.
28151da177e4SLinus Torvalds  */
2816b3bdda02SChristoph Lameter void vunmap(const void *addr)
28171da177e4SLinus Torvalds {
281879311c1fSChristoph Hellwig 	struct vm_struct *vm;
281979311c1fSChristoph Hellwig 
28201da177e4SLinus Torvalds 	BUG_ON(in_interrupt());
282134754b69SPeter Zijlstra 	might_sleep();
282279311c1fSChristoph Hellwig 
282379311c1fSChristoph Hellwig 	if (!addr)
282479311c1fSChristoph Hellwig 		return;
282579311c1fSChristoph Hellwig 	vm = remove_vm_area(addr);
282679311c1fSChristoph Hellwig 	if (unlikely(!vm)) {
282779311c1fSChristoph Hellwig 		WARN(1, KERN_ERR "Trying to vunmap() nonexistent vm area (%p)\n",
282879311c1fSChristoph Hellwig 				addr);
282979311c1fSChristoph Hellwig 		return;
283079311c1fSChristoph Hellwig 	}
283179311c1fSChristoph Hellwig 	kfree(vm);
28321da177e4SLinus Torvalds }
28331da177e4SLinus Torvalds EXPORT_SYMBOL(vunmap);
28341da177e4SLinus Torvalds 
28351da177e4SLinus Torvalds /**
28361da177e4SLinus Torvalds  * vmap - map an array of pages into virtually contiguous space
28371da177e4SLinus Torvalds  * @pages: array of page pointers
28381da177e4SLinus Torvalds  * @count: number of pages to map
28391da177e4SLinus Torvalds  * @flags: vm_area->flags
28401da177e4SLinus Torvalds  * @prot: page protection for the mapping
28411da177e4SLinus Torvalds  *
2842b944afc9SChristoph Hellwig  * Maps @count pages from @pages into contiguous kernel virtual space.
2843b944afc9SChristoph Hellwig  * If @flags contains %VM_MAP_PUT_PAGES the ownership of the pages array itself
2844b944afc9SChristoph Hellwig  * (which must be kmalloc or vmalloc memory) and one reference per pages in it
2845b944afc9SChristoph Hellwig  * are transferred from the caller to vmap(), and will be freed / dropped when
2846b944afc9SChristoph Hellwig  * vfree() is called on the return value.
2847a862f68aSMike Rapoport  *
2848a862f68aSMike Rapoport  * Return: the address of the area or %NULL on failure
28491da177e4SLinus Torvalds  */
28501da177e4SLinus Torvalds void *vmap(struct page **pages, unsigned int count,
28511da177e4SLinus Torvalds 	   unsigned long flags, pgprot_t prot)
28521da177e4SLinus Torvalds {
28531da177e4SLinus Torvalds 	struct vm_struct *area;
2854b67177ecSNicholas Piggin 	unsigned long addr;
285565ee03c4SGuillermo Julián Moreno 	unsigned long size;		/* In bytes */
28561da177e4SLinus Torvalds 
285734754b69SPeter Zijlstra 	might_sleep();
285834754b69SPeter Zijlstra 
285937f3605eSChristoph Hellwig 	if (WARN_ON_ONCE(flags & VM_FLUSH_RESET_PERMS))
286037f3605eSChristoph Hellwig 		return NULL;
286137f3605eSChristoph Hellwig 
2862bd1a8fb2SPeter Zijlstra 	/*
2863bd1a8fb2SPeter Zijlstra 	 * Your top guard is someone else's bottom guard. Not having a top
2864bd1a8fb2SPeter Zijlstra 	 * guard compromises someone else's mappings too.
2865bd1a8fb2SPeter Zijlstra 	 */
2866bd1a8fb2SPeter Zijlstra 	if (WARN_ON_ONCE(flags & VM_NO_GUARD))
2867bd1a8fb2SPeter Zijlstra 		flags &= ~VM_NO_GUARD;
2868bd1a8fb2SPeter Zijlstra 
2869ca79b0c2SArun KS 	if (count > totalram_pages())
28701da177e4SLinus Torvalds 		return NULL;
28711da177e4SLinus Torvalds 
287265ee03c4SGuillermo Julián Moreno 	size = (unsigned long)count << PAGE_SHIFT;
287365ee03c4SGuillermo Julián Moreno 	area = get_vm_area_caller(size, flags, __builtin_return_address(0));
28741da177e4SLinus Torvalds 	if (!area)
28751da177e4SLinus Torvalds 		return NULL;
287623016969SChristoph Lameter 
2877b67177ecSNicholas Piggin 	addr = (unsigned long)area->addr;
2878b67177ecSNicholas Piggin 	if (vmap_pages_range(addr, addr + size, pgprot_nx(prot),
2879b67177ecSNicholas Piggin 				pages, PAGE_SHIFT) < 0) {
28801da177e4SLinus Torvalds 		vunmap(area->addr);
28811da177e4SLinus Torvalds 		return NULL;
28821da177e4SLinus Torvalds 	}
28831da177e4SLinus Torvalds 
2884c22ee528SMiaohe Lin 	if (flags & VM_MAP_PUT_PAGES) {
2885b944afc9SChristoph Hellwig 		area->pages = pages;
2886c22ee528SMiaohe Lin 		area->nr_pages = count;
2887c22ee528SMiaohe Lin 	}
28881da177e4SLinus Torvalds 	return area->addr;
28891da177e4SLinus Torvalds }
28901da177e4SLinus Torvalds EXPORT_SYMBOL(vmap);
28911da177e4SLinus Torvalds 
28923e9a9e25SChristoph Hellwig #ifdef CONFIG_VMAP_PFN
28933e9a9e25SChristoph Hellwig struct vmap_pfn_data {
28943e9a9e25SChristoph Hellwig 	unsigned long	*pfns;
28953e9a9e25SChristoph Hellwig 	pgprot_t	prot;
28963e9a9e25SChristoph Hellwig 	unsigned int	idx;
28973e9a9e25SChristoph Hellwig };
28983e9a9e25SChristoph Hellwig 
28993e9a9e25SChristoph Hellwig static int vmap_pfn_apply(pte_t *pte, unsigned long addr, void *private)
29003e9a9e25SChristoph Hellwig {
29013e9a9e25SChristoph Hellwig 	struct vmap_pfn_data *data = private;
29023e9a9e25SChristoph Hellwig 
29033e9a9e25SChristoph Hellwig 	if (WARN_ON_ONCE(pfn_valid(data->pfns[data->idx])))
29043e9a9e25SChristoph Hellwig 		return -EINVAL;
29053e9a9e25SChristoph Hellwig 	*pte = pte_mkspecial(pfn_pte(data->pfns[data->idx++], data->prot));
29063e9a9e25SChristoph Hellwig 	return 0;
29073e9a9e25SChristoph Hellwig }
29083e9a9e25SChristoph Hellwig 
29093e9a9e25SChristoph Hellwig /**
29103e9a9e25SChristoph Hellwig  * vmap_pfn - map an array of PFNs into virtually contiguous space
29113e9a9e25SChristoph Hellwig  * @pfns: array of PFNs
29123e9a9e25SChristoph Hellwig  * @count: number of pages to map
29133e9a9e25SChristoph Hellwig  * @prot: page protection for the mapping
29143e9a9e25SChristoph Hellwig  *
29153e9a9e25SChristoph Hellwig  * Maps @count PFNs from @pfns into contiguous kernel virtual space and returns
29163e9a9e25SChristoph Hellwig  * the start address of the mapping.
29173e9a9e25SChristoph Hellwig  */
29183e9a9e25SChristoph Hellwig void *vmap_pfn(unsigned long *pfns, unsigned int count, pgprot_t prot)
29193e9a9e25SChristoph Hellwig {
29203e9a9e25SChristoph Hellwig 	struct vmap_pfn_data data = { .pfns = pfns, .prot = pgprot_nx(prot) };
29213e9a9e25SChristoph Hellwig 	struct vm_struct *area;
29223e9a9e25SChristoph Hellwig 
29233e9a9e25SChristoph Hellwig 	area = get_vm_area_caller(count * PAGE_SIZE, VM_IOREMAP,
29243e9a9e25SChristoph Hellwig 			__builtin_return_address(0));
29253e9a9e25SChristoph Hellwig 	if (!area)
29263e9a9e25SChristoph Hellwig 		return NULL;
29273e9a9e25SChristoph Hellwig 	if (apply_to_page_range(&init_mm, (unsigned long)area->addr,
29283e9a9e25SChristoph Hellwig 			count * PAGE_SIZE, vmap_pfn_apply, &data)) {
29293e9a9e25SChristoph Hellwig 		free_vm_area(area);
29303e9a9e25SChristoph Hellwig 		return NULL;
29313e9a9e25SChristoph Hellwig 	}
29323e9a9e25SChristoph Hellwig 	return area->addr;
29333e9a9e25SChristoph Hellwig }
29343e9a9e25SChristoph Hellwig EXPORT_SYMBOL_GPL(vmap_pfn);
29353e9a9e25SChristoph Hellwig #endif /* CONFIG_VMAP_PFN */
29363e9a9e25SChristoph Hellwig 
293712b9f873SUladzislau Rezki static inline unsigned int
293812b9f873SUladzislau Rezki vm_area_alloc_pages(gfp_t gfp, int nid,
2939343ab817SUladzislau Rezki (Sony) 		unsigned int order, unsigned int nr_pages, struct page **pages)
294012b9f873SUladzislau Rezki {
294112b9f873SUladzislau Rezki 	unsigned int nr_allocated = 0;
2942e9c3cda4SMichal Hocko 	gfp_t alloc_gfp = gfp;
2943e9c3cda4SMichal Hocko 	bool nofail = false;
2944ffb29b1cSChen Wandun 	struct page *page;
2945ffb29b1cSChen Wandun 	int i;
294612b9f873SUladzislau Rezki 
294712b9f873SUladzislau Rezki 	/*
294812b9f873SUladzislau Rezki 	 * For order-0 pages we make use of bulk allocator, if
294912b9f873SUladzislau Rezki 	 * the page array is partly or not at all populated due
295012b9f873SUladzislau Rezki 	 * to fails, fallback to a single page allocator that is
295112b9f873SUladzislau Rezki 	 * more permissive.
295212b9f873SUladzislau Rezki 	 */
2953c00b6b96SChen Wandun 	if (!order) {
2954e9c3cda4SMichal Hocko 		/* bulk allocator doesn't support nofail req. officially */
29559376130cSMichal Hocko 		gfp_t bulk_gfp = gfp & ~__GFP_NOFAIL;
29569376130cSMichal Hocko 
2957343ab817SUladzislau Rezki (Sony) 		while (nr_allocated < nr_pages) {
2958343ab817SUladzislau Rezki (Sony) 			unsigned int nr, nr_pages_request;
2959343ab817SUladzislau Rezki (Sony) 
2960343ab817SUladzislau Rezki (Sony) 			/*
2961343ab817SUladzislau Rezki (Sony) 			 * A maximum allowed request is hard-coded and is 100
2962343ab817SUladzislau Rezki (Sony) 			 * pages per call. That is done in order to prevent a
2963343ab817SUladzislau Rezki (Sony) 			 * long preemption off scenario in the bulk-allocator
2964343ab817SUladzislau Rezki (Sony) 			 * so the range is [1:100].
2965343ab817SUladzislau Rezki (Sony) 			 */
2966343ab817SUladzislau Rezki (Sony) 			nr_pages_request = min(100U, nr_pages - nr_allocated);
2967343ab817SUladzislau Rezki (Sony) 
2968c00b6b96SChen Wandun 			/* memory allocation should consider mempolicy, we can't
2969c00b6b96SChen Wandun 			 * wrongly use nearest node when nid == NUMA_NO_NODE,
2970c00b6b96SChen Wandun 			 * otherwise memory may be allocated in only one node,
297198af39d5SYixuan Cao 			 * but mempolicy wants to alloc memory by interleaving.
2972c00b6b96SChen Wandun 			 */
2973c00b6b96SChen Wandun 			if (IS_ENABLED(CONFIG_NUMA) && nid == NUMA_NO_NODE)
29749376130cSMichal Hocko 				nr = alloc_pages_bulk_array_mempolicy(bulk_gfp,
2975c00b6b96SChen Wandun 							nr_pages_request,
2976c00b6b96SChen Wandun 							pages + nr_allocated);
2977c00b6b96SChen Wandun 
2978c00b6b96SChen Wandun 			else
29799376130cSMichal Hocko 				nr = alloc_pages_bulk_array_node(bulk_gfp, nid,
2980c00b6b96SChen Wandun 							nr_pages_request,
2981c00b6b96SChen Wandun 							pages + nr_allocated);
2982343ab817SUladzislau Rezki (Sony) 
2983343ab817SUladzislau Rezki (Sony) 			nr_allocated += nr;
2984343ab817SUladzislau Rezki (Sony) 			cond_resched();
2985343ab817SUladzislau Rezki (Sony) 
2986343ab817SUladzislau Rezki (Sony) 			/*
2987343ab817SUladzislau Rezki (Sony) 			 * If zero or pages were obtained partly,
2988343ab817SUladzislau Rezki (Sony) 			 * fallback to a single page allocator.
2989343ab817SUladzislau Rezki (Sony) 			 */
2990343ab817SUladzislau Rezki (Sony) 			if (nr != nr_pages_request)
2991343ab817SUladzislau Rezki (Sony) 				break;
2992343ab817SUladzislau Rezki (Sony) 		}
2993e9c3cda4SMichal Hocko 	} else if (gfp & __GFP_NOFAIL) {
2994e9c3cda4SMichal Hocko 		/*
2995e9c3cda4SMichal Hocko 		 * Higher order nofail allocations are really expensive and
2996e9c3cda4SMichal Hocko 		 * potentially dangerous (pre-mature OOM, disruptive reclaim
2997e9c3cda4SMichal Hocko 		 * and compaction etc.
2998e9c3cda4SMichal Hocko 		 */
2999e9c3cda4SMichal Hocko 		alloc_gfp &= ~__GFP_NOFAIL;
3000e9c3cda4SMichal Hocko 		nofail = true;
30013b8000aeSNicholas Piggin 	}
300212b9f873SUladzislau Rezki 
300312b9f873SUladzislau Rezki 	/* High-order pages or fallback path if "bulk" fails. */
3004ffb29b1cSChen Wandun 	while (nr_allocated < nr_pages) {
3005dd544141SVasily Averin 		if (fatal_signal_pending(current))
3006dd544141SVasily Averin 			break;
3007dd544141SVasily Averin 
3008ffb29b1cSChen Wandun 		if (nid == NUMA_NO_NODE)
3009e9c3cda4SMichal Hocko 			page = alloc_pages(alloc_gfp, order);
3010ffb29b1cSChen Wandun 		else
3011e9c3cda4SMichal Hocko 			page = alloc_pages_node(nid, alloc_gfp, order);
3012e9c3cda4SMichal Hocko 		if (unlikely(!page)) {
3013e9c3cda4SMichal Hocko 			if (!nofail)
301412b9f873SUladzislau Rezki 				break;
3015e9c3cda4SMichal Hocko 
3016e9c3cda4SMichal Hocko 			/* fall back to the zero order allocations */
3017e9c3cda4SMichal Hocko 			alloc_gfp |= __GFP_NOFAIL;
3018e9c3cda4SMichal Hocko 			order = 0;
3019e9c3cda4SMichal Hocko 			continue;
3020e9c3cda4SMichal Hocko 		}
3021e9c3cda4SMichal Hocko 
30223b8000aeSNicholas Piggin 		/*
30233b8000aeSNicholas Piggin 		 * Higher order allocations must be able to be treated as
30243b8000aeSNicholas Piggin 		 * indepdenent small pages by callers (as they can with
30253b8000aeSNicholas Piggin 		 * small-page vmallocs). Some drivers do their own refcounting
30263b8000aeSNicholas Piggin 		 * on vmalloc_to_page() pages, some use page->mapping,
30273b8000aeSNicholas Piggin 		 * page->lru, etc.
30283b8000aeSNicholas Piggin 		 */
30293b8000aeSNicholas Piggin 		if (order)
30303b8000aeSNicholas Piggin 			split_page(page, order);
303112b9f873SUladzislau Rezki 
303212b9f873SUladzislau Rezki 		/*
303312b9f873SUladzislau Rezki 		 * Careful, we allocate and map page-order pages, but
303412b9f873SUladzislau Rezki 		 * tracking is done per PAGE_SIZE page so as to keep the
303512b9f873SUladzislau Rezki 		 * vm_struct APIs independent of the physical/mapped size.
303612b9f873SUladzislau Rezki 		 */
303712b9f873SUladzislau Rezki 		for (i = 0; i < (1U << order); i++)
303812b9f873SUladzislau Rezki 			pages[nr_allocated + i] = page + i;
303912b9f873SUladzislau Rezki 
304012b9f873SUladzislau Rezki 		cond_resched();
304112b9f873SUladzislau Rezki 		nr_allocated += 1U << order;
304212b9f873SUladzislau Rezki 	}
304312b9f873SUladzislau Rezki 
304412b9f873SUladzislau Rezki 	return nr_allocated;
304512b9f873SUladzislau Rezki }
304612b9f873SUladzislau Rezki 
3047e31d9eb5SAdrian Bunk static void *__vmalloc_area_node(struct vm_struct *area, gfp_t gfp_mask,
3048121e6f32SNicholas Piggin 				 pgprot_t prot, unsigned int page_shift,
3049121e6f32SNicholas Piggin 				 int node)
30501da177e4SLinus Torvalds {
3051930f036bSDavid Rientjes 	const gfp_t nested_gfp = (gfp_mask & GFP_RECLAIM_MASK) | __GFP_ZERO;
30529376130cSMichal Hocko 	bool nofail = gfp_mask & __GFP_NOFAIL;
3053121e6f32SNicholas Piggin 	unsigned long addr = (unsigned long)area->addr;
3054121e6f32SNicholas Piggin 	unsigned long size = get_vm_area_size(area);
305534fe6537SAndrew Morton 	unsigned long array_size;
3056121e6f32SNicholas Piggin 	unsigned int nr_small_pages = size >> PAGE_SHIFT;
3057121e6f32SNicholas Piggin 	unsigned int page_order;
3058451769ebSMichal Hocko 	unsigned int flags;
3059451769ebSMichal Hocko 	int ret;
30601da177e4SLinus Torvalds 
3061121e6f32SNicholas Piggin 	array_size = (unsigned long)nr_small_pages * sizeof(struct page *);
306280b1d8fdSLorenzo Stoakes 
3063f255935bSChristoph Hellwig 	if (!(gfp_mask & (GFP_DMA | GFP_DMA32)))
3064f255935bSChristoph Hellwig 		gfp_mask |= __GFP_HIGHMEM;
30651da177e4SLinus Torvalds 
30661da177e4SLinus Torvalds 	/* Please note that the recursion is strictly bounded. */
30678757d5faSJan Kiszka 	if (array_size > PAGE_SIZE) {
30685c1f4e69SUladzislau Rezki (Sony) 		area->pages = __vmalloc_node(array_size, 1, nested_gfp, node,
3069f255935bSChristoph Hellwig 					area->caller);
3070286e1ea3SAndrew Morton 	} else {
30715c1f4e69SUladzislau Rezki (Sony) 		area->pages = kmalloc_node(array_size, nested_gfp, node);
3072286e1ea3SAndrew Morton 	}
30737ea36242SAustin Kim 
30745c1f4e69SUladzislau Rezki (Sony) 	if (!area->pages) {
3075c3d77172SUladzislau Rezki (Sony) 		warn_alloc(gfp_mask, NULL,
3076f4bdfeafSUladzislau Rezki (Sony) 			"vmalloc error: size %lu, failed to allocated page array size %lu",
3077d70bec8cSNicholas Piggin 			nr_small_pages * PAGE_SIZE, array_size);
3078cd61413bSUladzislau Rezki (Sony) 		free_vm_area(area);
30791da177e4SLinus Torvalds 		return NULL;
30801da177e4SLinus Torvalds 	}
30811da177e4SLinus Torvalds 
3082121e6f32SNicholas Piggin 	set_vm_area_page_order(area, page_shift - PAGE_SHIFT);
3083121e6f32SNicholas Piggin 	page_order = vm_area_page_order(area);
3084121e6f32SNicholas Piggin 
3085c3d77172SUladzislau Rezki (Sony) 	area->nr_pages = vm_area_alloc_pages(gfp_mask | __GFP_NOWARN,
3086c3d77172SUladzislau Rezki (Sony) 		node, page_order, nr_small_pages, area->pages);
30875c1f4e69SUladzislau Rezki (Sony) 
308897105f0aSRoman Gushchin 	atomic_long_add(area->nr_pages, &nr_vmalloc_pages);
30894e5aa1f4SShakeel Butt 	if (gfp_mask & __GFP_ACCOUNT) {
30903b8000aeSNicholas Piggin 		int i;
30914e5aa1f4SShakeel Butt 
30923b8000aeSNicholas Piggin 		for (i = 0; i < area->nr_pages; i++)
30933b8000aeSNicholas Piggin 			mod_memcg_page_state(area->pages[i], MEMCG_VMALLOC, 1);
30944e5aa1f4SShakeel Butt 	}
30955c1f4e69SUladzislau Rezki (Sony) 
30965c1f4e69SUladzislau Rezki (Sony) 	/*
30975c1f4e69SUladzislau Rezki (Sony) 	 * If not enough pages were obtained to accomplish an
3098f41f036bSChristoph Hellwig 	 * allocation request, free them via vfree() if any.
30995c1f4e69SUladzislau Rezki (Sony) 	 */
31005c1f4e69SUladzislau Rezki (Sony) 	if (area->nr_pages != nr_small_pages) {
3101f349b15eSYafang Shao 		/* vm_area_alloc_pages() can also fail due to a fatal signal */
3102f349b15eSYafang Shao 		if (!fatal_signal_pending(current))
3103c3d77172SUladzislau Rezki (Sony) 			warn_alloc(gfp_mask, NULL,
3104f4bdfeafSUladzislau Rezki (Sony) 				"vmalloc error: size %lu, page order %u, failed to allocate pages",
3105d70bec8cSNicholas Piggin 				area->nr_pages * PAGE_SIZE, page_order);
31061da177e4SLinus Torvalds 		goto fail;
31071da177e4SLinus Torvalds 	}
3108121e6f32SNicholas Piggin 
3109451769ebSMichal Hocko 	/*
3110451769ebSMichal Hocko 	 * page tables allocations ignore external gfp mask, enforce it
3111451769ebSMichal Hocko 	 * by the scope API
3112451769ebSMichal Hocko 	 */
3113451769ebSMichal Hocko 	if ((gfp_mask & (__GFP_FS | __GFP_IO)) == __GFP_IO)
3114451769ebSMichal Hocko 		flags = memalloc_nofs_save();
3115451769ebSMichal Hocko 	else if ((gfp_mask & (__GFP_FS | __GFP_IO)) == 0)
3116451769ebSMichal Hocko 		flags = memalloc_noio_save();
3117451769ebSMichal Hocko 
31189376130cSMichal Hocko 	do {
3119451769ebSMichal Hocko 		ret = vmap_pages_range(addr, addr + size, prot, area->pages,
3120451769ebSMichal Hocko 			page_shift);
31219376130cSMichal Hocko 		if (nofail && (ret < 0))
31229376130cSMichal Hocko 			schedule_timeout_uninterruptible(1);
31239376130cSMichal Hocko 	} while (nofail && (ret < 0));
3124451769ebSMichal Hocko 
3125451769ebSMichal Hocko 	if ((gfp_mask & (__GFP_FS | __GFP_IO)) == __GFP_IO)
3126451769ebSMichal Hocko 		memalloc_nofs_restore(flags);
3127451769ebSMichal Hocko 	else if ((gfp_mask & (__GFP_FS | __GFP_IO)) == 0)
3128451769ebSMichal Hocko 		memalloc_noio_restore(flags);
3129451769ebSMichal Hocko 
3130451769ebSMichal Hocko 	if (ret < 0) {
3131c3d77172SUladzislau Rezki (Sony) 		warn_alloc(gfp_mask, NULL,
3132f4bdfeafSUladzislau Rezki (Sony) 			"vmalloc error: size %lu, failed to map pages",
3133d70bec8cSNicholas Piggin 			area->nr_pages * PAGE_SIZE);
31341da177e4SLinus Torvalds 		goto fail;
3135d70bec8cSNicholas Piggin 	}
3136ed1f324cSChristoph Hellwig 
31371da177e4SLinus Torvalds 	return area->addr;
31381da177e4SLinus Torvalds 
31391da177e4SLinus Torvalds fail:
3140f41f036bSChristoph Hellwig 	vfree(area->addr);
31411da177e4SLinus Torvalds 	return NULL;
31421da177e4SLinus Torvalds }
31431da177e4SLinus Torvalds 
3144d0a21265SDavid Rientjes /**
3145d0a21265SDavid Rientjes  * __vmalloc_node_range - allocate virtually contiguous memory
3146d0a21265SDavid Rientjes  * @size:		  allocation size
3147d0a21265SDavid Rientjes  * @align:		  desired alignment
3148d0a21265SDavid Rientjes  * @start:		  vm area range start
3149d0a21265SDavid Rientjes  * @end:		  vm area range end
3150d0a21265SDavid Rientjes  * @gfp_mask:		  flags for the page level allocator
3151d0a21265SDavid Rientjes  * @prot:		  protection mask for the allocated pages
3152cb9e3c29SAndrey Ryabinin  * @vm_flags:		  additional vm area flags (e.g. %VM_NO_GUARD)
315300ef2d2fSDavid Rientjes  * @node:		  node to use for allocation or NUMA_NO_NODE
3154d0a21265SDavid Rientjes  * @caller:		  caller's return address
3155d0a21265SDavid Rientjes  *
3156d0a21265SDavid Rientjes  * Allocate enough pages to cover @size from the page level
3157b7d90e7aSMichal Hocko  * allocator with @gfp_mask flags. Please note that the full set of gfp
315830d3f011SMichal Hocko  * flags are not supported. GFP_KERNEL, GFP_NOFS and GFP_NOIO are all
315930d3f011SMichal Hocko  * supported.
316030d3f011SMichal Hocko  * Zone modifiers are not supported. From the reclaim modifiers
316130d3f011SMichal Hocko  * __GFP_DIRECT_RECLAIM is required (aka GFP_NOWAIT is not supported)
316230d3f011SMichal Hocko  * and only __GFP_NOFAIL is supported (i.e. __GFP_NORETRY and
316330d3f011SMichal Hocko  * __GFP_RETRY_MAYFAIL are not supported).
316430d3f011SMichal Hocko  *
316530d3f011SMichal Hocko  * __GFP_NOWARN can be used to suppress failures messages.
3166b7d90e7aSMichal Hocko  *
3167b7d90e7aSMichal Hocko  * Map them into contiguous kernel virtual space, using a pagetable
3168b7d90e7aSMichal Hocko  * protection of @prot.
3169a862f68aSMike Rapoport  *
3170a862f68aSMike Rapoport  * Return: the address of the area or %NULL on failure
3171d0a21265SDavid Rientjes  */
3172d0a21265SDavid Rientjes void *__vmalloc_node_range(unsigned long size, unsigned long align,
3173d0a21265SDavid Rientjes 			unsigned long start, unsigned long end, gfp_t gfp_mask,
3174cb9e3c29SAndrey Ryabinin 			pgprot_t prot, unsigned long vm_flags, int node,
3175cb9e3c29SAndrey Ryabinin 			const void *caller)
3176930fc45aSChristoph Lameter {
3177d0a21265SDavid Rientjes 	struct vm_struct *area;
317819f1c3acSAndrey Konovalov 	void *ret;
3179f6e39794SAndrey Konovalov 	kasan_vmalloc_flags_t kasan_flags = KASAN_VMALLOC_NONE;
3180d0a21265SDavid Rientjes 	unsigned long real_size = size;
3181121e6f32SNicholas Piggin 	unsigned long real_align = align;
3182121e6f32SNicholas Piggin 	unsigned int shift = PAGE_SHIFT;
3183d0a21265SDavid Rientjes 
3184d70bec8cSNicholas Piggin 	if (WARN_ON_ONCE(!size))
3185d70bec8cSNicholas Piggin 		return NULL;
3186d70bec8cSNicholas Piggin 
3187d70bec8cSNicholas Piggin 	if ((size >> PAGE_SHIFT) > totalram_pages()) {
3188d70bec8cSNicholas Piggin 		warn_alloc(gfp_mask, NULL,
3189f4bdfeafSUladzislau Rezki (Sony) 			"vmalloc error: size %lu, exceeds total pages",
3190f4bdfeafSUladzislau Rezki (Sony) 			real_size);
3191d70bec8cSNicholas Piggin 		return NULL;
3192121e6f32SNicholas Piggin 	}
3193d0a21265SDavid Rientjes 
3194559089e0SSong Liu 	if (vmap_allow_huge && (vm_flags & VM_ALLOW_HUGE_VMAP)) {
3195121e6f32SNicholas Piggin 		unsigned long size_per_node;
3196121e6f32SNicholas Piggin 
3197121e6f32SNicholas Piggin 		/*
3198121e6f32SNicholas Piggin 		 * Try huge pages. Only try for PAGE_KERNEL allocations,
3199121e6f32SNicholas Piggin 		 * others like modules don't yet expect huge pages in
3200121e6f32SNicholas Piggin 		 * their allocations due to apply_to_page_range not
3201121e6f32SNicholas Piggin 		 * supporting them.
3202121e6f32SNicholas Piggin 		 */
3203121e6f32SNicholas Piggin 
3204121e6f32SNicholas Piggin 		size_per_node = size;
3205121e6f32SNicholas Piggin 		if (node == NUMA_NO_NODE)
3206121e6f32SNicholas Piggin 			size_per_node /= num_online_nodes();
32073382bbeeSChristophe Leroy 		if (arch_vmap_pmd_supported(prot) && size_per_node >= PMD_SIZE)
3208121e6f32SNicholas Piggin 			shift = PMD_SHIFT;
32093382bbeeSChristophe Leroy 		else
32103382bbeeSChristophe Leroy 			shift = arch_vmap_pte_supported_shift(size_per_node);
32113382bbeeSChristophe Leroy 
3212121e6f32SNicholas Piggin 		align = max(real_align, 1UL << shift);
3213121e6f32SNicholas Piggin 		size = ALIGN(real_size, 1UL << shift);
3214121e6f32SNicholas Piggin 	}
3215121e6f32SNicholas Piggin 
3216121e6f32SNicholas Piggin again:
32177ca3027bSDaniel Axtens 	area = __get_vm_area_node(real_size, align, shift, VM_ALLOC |
32187ca3027bSDaniel Axtens 				  VM_UNINITIALIZED | vm_flags, start, end, node,
32197ca3027bSDaniel Axtens 				  gfp_mask, caller);
3220d70bec8cSNicholas Piggin 	if (!area) {
32219376130cSMichal Hocko 		bool nofail = gfp_mask & __GFP_NOFAIL;
3222d70bec8cSNicholas Piggin 		warn_alloc(gfp_mask, NULL,
32239376130cSMichal Hocko 			"vmalloc error: size %lu, vm_struct allocation failed%s",
32249376130cSMichal Hocko 			real_size, (nofail) ? ". Retrying." : "");
32259376130cSMichal Hocko 		if (nofail) {
32269376130cSMichal Hocko 			schedule_timeout_uninterruptible(1);
32279376130cSMichal Hocko 			goto again;
32289376130cSMichal Hocko 		}
3229de7d2b56SJoe Perches 		goto fail;
3230d70bec8cSNicholas Piggin 	}
3231d0a21265SDavid Rientjes 
3232f6e39794SAndrey Konovalov 	/*
3233f6e39794SAndrey Konovalov 	 * Prepare arguments for __vmalloc_area_node() and
3234f6e39794SAndrey Konovalov 	 * kasan_unpoison_vmalloc().
3235f6e39794SAndrey Konovalov 	 */
3236f6e39794SAndrey Konovalov 	if (pgprot_val(prot) == pgprot_val(PAGE_KERNEL)) {
3237f6e39794SAndrey Konovalov 		if (kasan_hw_tags_enabled()) {
323801d92c7fSAndrey Konovalov 			/*
323901d92c7fSAndrey Konovalov 			 * Modify protection bits to allow tagging.
3240f6e39794SAndrey Konovalov 			 * This must be done before mapping.
324101d92c7fSAndrey Konovalov 			 */
324201d92c7fSAndrey Konovalov 			prot = arch_vmap_pgprot_tagged(prot);
324301d92c7fSAndrey Konovalov 
324423689e91SAndrey Konovalov 			/*
3245f6e39794SAndrey Konovalov 			 * Skip page_alloc poisoning and zeroing for physical
3246f6e39794SAndrey Konovalov 			 * pages backing VM_ALLOC mapping. Memory is instead
3247f6e39794SAndrey Konovalov 			 * poisoned and zeroed by kasan_unpoison_vmalloc().
324823689e91SAndrey Konovalov 			 */
32490a54864fSPeter Collingbourne 			gfp_mask |= __GFP_SKIP_KASAN | __GFP_SKIP_ZERO;
325023689e91SAndrey Konovalov 		}
325123689e91SAndrey Konovalov 
3252f6e39794SAndrey Konovalov 		/* Take note that the mapping is PAGE_KERNEL. */
3253f6e39794SAndrey Konovalov 		kasan_flags |= KASAN_VMALLOC_PROT_NORMAL;
3254f6e39794SAndrey Konovalov 	}
3255f6e39794SAndrey Konovalov 
325601d92c7fSAndrey Konovalov 	/* Allocate physical pages and map them into vmalloc space. */
325719f1c3acSAndrey Konovalov 	ret = __vmalloc_area_node(area, gfp_mask, prot, shift, node);
325819f1c3acSAndrey Konovalov 	if (!ret)
3259121e6f32SNicholas Piggin 		goto fail;
326089219d37SCatalin Marinas 
326123689e91SAndrey Konovalov 	/*
326223689e91SAndrey Konovalov 	 * Mark the pages as accessible, now that they are mapped.
32636c2f761dSAndrey Konovalov 	 * The condition for setting KASAN_VMALLOC_INIT should complement the
32646c2f761dSAndrey Konovalov 	 * one in post_alloc_hook() with regards to the __GFP_SKIP_ZERO check
32656c2f761dSAndrey Konovalov 	 * to make sure that memory is initialized under the same conditions.
3266f6e39794SAndrey Konovalov 	 * Tag-based KASAN modes only assign tags to normal non-executable
3267f6e39794SAndrey Konovalov 	 * allocations, see __kasan_unpoison_vmalloc().
326823689e91SAndrey Konovalov 	 */
3269f6e39794SAndrey Konovalov 	kasan_flags |= KASAN_VMALLOC_VM_ALLOC;
32706c2f761dSAndrey Konovalov 	if (!want_init_on_free() && want_init_on_alloc(gfp_mask) &&
32716c2f761dSAndrey Konovalov 	    (gfp_mask & __GFP_SKIP_ZERO))
327223689e91SAndrey Konovalov 		kasan_flags |= KASAN_VMALLOC_INIT;
3273f6e39794SAndrey Konovalov 	/* KASAN_VMALLOC_PROT_NORMAL already set if required. */
327423689e91SAndrey Konovalov 	area->addr = kasan_unpoison_vmalloc(area->addr, real_size, kasan_flags);
327519f1c3acSAndrey Konovalov 
327689219d37SCatalin Marinas 	/*
327720fc02b4SZhang Yanfei 	 * In this function, newly allocated vm_struct has VM_UNINITIALIZED
327820fc02b4SZhang Yanfei 	 * flag. It means that vm_struct is not fully initialized.
32794341fa45SJoonsoo Kim 	 * Now, it is fully initialized, so remove this flag here.
3280f5252e00SMitsuo Hayasaka 	 */
328120fc02b4SZhang Yanfei 	clear_vm_uninitialized_flag(area);
3282f5252e00SMitsuo Hayasaka 
32837ca3027bSDaniel Axtens 	size = PAGE_ALIGN(size);
328460115fa5SKefeng Wang 	if (!(vm_flags & VM_DEFER_KMEMLEAK))
328594f4a161SCatalin Marinas 		kmemleak_vmalloc(area, size, gfp_mask);
328689219d37SCatalin Marinas 
328719f1c3acSAndrey Konovalov 	return area->addr;
3288de7d2b56SJoe Perches 
3289de7d2b56SJoe Perches fail:
3290121e6f32SNicholas Piggin 	if (shift > PAGE_SHIFT) {
3291121e6f32SNicholas Piggin 		shift = PAGE_SHIFT;
3292121e6f32SNicholas Piggin 		align = real_align;
3293121e6f32SNicholas Piggin 		size = real_size;
3294121e6f32SNicholas Piggin 		goto again;
3295121e6f32SNicholas Piggin 	}
3296121e6f32SNicholas Piggin 
3297de7d2b56SJoe Perches 	return NULL;
3298930fc45aSChristoph Lameter }
3299930fc45aSChristoph Lameter 
33001da177e4SLinus Torvalds /**
3301930fc45aSChristoph Lameter  * __vmalloc_node - allocate virtually contiguous memory
33021da177e4SLinus Torvalds  * @size:	    allocation size
33032dca6999SDavid Miller  * @align:	    desired alignment
33041da177e4SLinus Torvalds  * @gfp_mask:	    flags for the page level allocator
330500ef2d2fSDavid Rientjes  * @node:	    node to use for allocation or NUMA_NO_NODE
3306c85d194bSRandy Dunlap  * @caller:	    caller's return address
33071da177e4SLinus Torvalds  *
3308f38fcb9cSChristoph Hellwig  * Allocate enough pages to cover @size from the page level allocator with
3309f38fcb9cSChristoph Hellwig  * @gfp_mask flags.  Map them into contiguous kernel virtual space.
3310a7c3e901SMichal Hocko  *
3311dcda9b04SMichal Hocko  * Reclaim modifiers in @gfp_mask - __GFP_NORETRY, __GFP_RETRY_MAYFAIL
3312a7c3e901SMichal Hocko  * and __GFP_NOFAIL are not supported
3313a7c3e901SMichal Hocko  *
3314a7c3e901SMichal Hocko  * Any use of gfp flags outside of GFP_KERNEL should be consulted
3315a7c3e901SMichal Hocko  * with mm people.
3316a862f68aSMike Rapoport  *
3317a862f68aSMike Rapoport  * Return: pointer to the allocated memory or %NULL on error
33181da177e4SLinus Torvalds  */
33192b905948SChristoph Hellwig void *__vmalloc_node(unsigned long size, unsigned long align,
3320f38fcb9cSChristoph Hellwig 			    gfp_t gfp_mask, int node, const void *caller)
33211da177e4SLinus Torvalds {
3322d0a21265SDavid Rientjes 	return __vmalloc_node_range(size, align, VMALLOC_START, VMALLOC_END,
3323f38fcb9cSChristoph Hellwig 				gfp_mask, PAGE_KERNEL, 0, node, caller);
33241da177e4SLinus Torvalds }
3325c3f896dcSChristoph Hellwig /*
3326c3f896dcSChristoph Hellwig  * This is only for performance analysis of vmalloc and stress purpose.
3327c3f896dcSChristoph Hellwig  * It is required by vmalloc test module, therefore do not use it other
3328c3f896dcSChristoph Hellwig  * than that.
3329c3f896dcSChristoph Hellwig  */
3330c3f896dcSChristoph Hellwig #ifdef CONFIG_TEST_VMALLOC_MODULE
3331c3f896dcSChristoph Hellwig EXPORT_SYMBOL_GPL(__vmalloc_node);
3332c3f896dcSChristoph Hellwig #endif
33331da177e4SLinus Torvalds 
333488dca4caSChristoph Hellwig void *__vmalloc(unsigned long size, gfp_t gfp_mask)
3335930fc45aSChristoph Lameter {
3336f38fcb9cSChristoph Hellwig 	return __vmalloc_node(size, 1, gfp_mask, NUMA_NO_NODE,
333723016969SChristoph Lameter 				__builtin_return_address(0));
3338930fc45aSChristoph Lameter }
33391da177e4SLinus Torvalds EXPORT_SYMBOL(__vmalloc);
33401da177e4SLinus Torvalds 
33411da177e4SLinus Torvalds /**
33421da177e4SLinus Torvalds  * vmalloc - allocate virtually contiguous memory
33431da177e4SLinus Torvalds  * @size:    allocation size
334492eac168SMike Rapoport  *
33451da177e4SLinus Torvalds  * Allocate enough pages to cover @size from the page level
33461da177e4SLinus Torvalds  * allocator and map them into contiguous kernel virtual space.
33471da177e4SLinus Torvalds  *
3348c1c8897fSMichael Opdenacker  * For tight control over page level allocator and protection flags
33491da177e4SLinus Torvalds  * use __vmalloc() instead.
3350a862f68aSMike Rapoport  *
3351a862f68aSMike Rapoport  * Return: pointer to the allocated memory or %NULL on error
33521da177e4SLinus Torvalds  */
33531da177e4SLinus Torvalds void *vmalloc(unsigned long size)
33541da177e4SLinus Torvalds {
33554d39d728SChristoph Hellwig 	return __vmalloc_node(size, 1, GFP_KERNEL, NUMA_NO_NODE,
33564d39d728SChristoph Hellwig 				__builtin_return_address(0));
33571da177e4SLinus Torvalds }
33581da177e4SLinus Torvalds EXPORT_SYMBOL(vmalloc);
33591da177e4SLinus Torvalds 
3360930fc45aSChristoph Lameter /**
3361559089e0SSong Liu  * vmalloc_huge - allocate virtually contiguous memory, allow huge pages
336215a64f5aSClaudio Imbrenda  * @size:      allocation size
3363559089e0SSong Liu  * @gfp_mask:  flags for the page level allocator
336415a64f5aSClaudio Imbrenda  *
3365559089e0SSong Liu  * Allocate enough pages to cover @size from the page level
336615a64f5aSClaudio Imbrenda  * allocator and map them into contiguous kernel virtual space.
3367559089e0SSong Liu  * If @size is greater than or equal to PMD_SIZE, allow using
3368559089e0SSong Liu  * huge pages for the memory
336915a64f5aSClaudio Imbrenda  *
337015a64f5aSClaudio Imbrenda  * Return: pointer to the allocated memory or %NULL on error
337115a64f5aSClaudio Imbrenda  */
3372559089e0SSong Liu void *vmalloc_huge(unsigned long size, gfp_t gfp_mask)
337315a64f5aSClaudio Imbrenda {
337415a64f5aSClaudio Imbrenda 	return __vmalloc_node_range(size, 1, VMALLOC_START, VMALLOC_END,
3375559089e0SSong Liu 				    gfp_mask, PAGE_KERNEL, VM_ALLOW_HUGE_VMAP,
337615a64f5aSClaudio Imbrenda 				    NUMA_NO_NODE, __builtin_return_address(0));
337715a64f5aSClaudio Imbrenda }
3378559089e0SSong Liu EXPORT_SYMBOL_GPL(vmalloc_huge);
337915a64f5aSClaudio Imbrenda 
338015a64f5aSClaudio Imbrenda /**
3381e1ca7788SDave Young  * vzalloc - allocate virtually contiguous memory with zero fill
3382e1ca7788SDave Young  * @size:    allocation size
338392eac168SMike Rapoport  *
3384e1ca7788SDave Young  * Allocate enough pages to cover @size from the page level
3385e1ca7788SDave Young  * allocator and map them into contiguous kernel virtual space.
3386e1ca7788SDave Young  * The memory allocated is set to zero.
3387e1ca7788SDave Young  *
3388e1ca7788SDave Young  * For tight control over page level allocator and protection flags
3389e1ca7788SDave Young  * use __vmalloc() instead.
3390a862f68aSMike Rapoport  *
3391a862f68aSMike Rapoport  * Return: pointer to the allocated memory or %NULL on error
3392e1ca7788SDave Young  */
3393e1ca7788SDave Young void *vzalloc(unsigned long size)
3394e1ca7788SDave Young {
33954d39d728SChristoph Hellwig 	return __vmalloc_node(size, 1, GFP_KERNEL | __GFP_ZERO, NUMA_NO_NODE,
33964d39d728SChristoph Hellwig 				__builtin_return_address(0));
3397e1ca7788SDave Young }
3398e1ca7788SDave Young EXPORT_SYMBOL(vzalloc);
3399e1ca7788SDave Young 
3400e1ca7788SDave Young /**
3401ead04089SRolf Eike Beer  * vmalloc_user - allocate zeroed virtually contiguous memory for userspace
340283342314SNick Piggin  * @size: allocation size
3403ead04089SRolf Eike Beer  *
3404ead04089SRolf Eike Beer  * The resulting memory area is zeroed so it can be mapped to userspace
3405ead04089SRolf Eike Beer  * without leaking data.
3406a862f68aSMike Rapoport  *
3407a862f68aSMike Rapoport  * Return: pointer to the allocated memory or %NULL on error
340883342314SNick Piggin  */
340983342314SNick Piggin void *vmalloc_user(unsigned long size)
341083342314SNick Piggin {
3411bc84c535SRoman Penyaev 	return __vmalloc_node_range(size, SHMLBA,  VMALLOC_START, VMALLOC_END,
3412bc84c535SRoman Penyaev 				    GFP_KERNEL | __GFP_ZERO, PAGE_KERNEL,
3413bc84c535SRoman Penyaev 				    VM_USERMAP, NUMA_NO_NODE,
341400ef2d2fSDavid Rientjes 				    __builtin_return_address(0));
341583342314SNick Piggin }
341683342314SNick Piggin EXPORT_SYMBOL(vmalloc_user);
341783342314SNick Piggin 
341883342314SNick Piggin /**
3419930fc45aSChristoph Lameter  * vmalloc_node - allocate memory on a specific node
3420930fc45aSChristoph Lameter  * @size:	  allocation size
3421d44e0780SRandy Dunlap  * @node:	  numa node
3422930fc45aSChristoph Lameter  *
3423930fc45aSChristoph Lameter  * Allocate enough pages to cover @size from the page level
3424930fc45aSChristoph Lameter  * allocator and map them into contiguous kernel virtual space.
3425930fc45aSChristoph Lameter  *
3426c1c8897fSMichael Opdenacker  * For tight control over page level allocator and protection flags
3427930fc45aSChristoph Lameter  * use __vmalloc() instead.
3428a862f68aSMike Rapoport  *
3429a862f68aSMike Rapoport  * Return: pointer to the allocated memory or %NULL on error
3430930fc45aSChristoph Lameter  */
3431930fc45aSChristoph Lameter void *vmalloc_node(unsigned long size, int node)
3432930fc45aSChristoph Lameter {
3433f38fcb9cSChristoph Hellwig 	return __vmalloc_node(size, 1, GFP_KERNEL, node,
3434f38fcb9cSChristoph Hellwig 			__builtin_return_address(0));
3435930fc45aSChristoph Lameter }
3436930fc45aSChristoph Lameter EXPORT_SYMBOL(vmalloc_node);
3437930fc45aSChristoph Lameter 
3438e1ca7788SDave Young /**
3439e1ca7788SDave Young  * vzalloc_node - allocate memory on a specific node with zero fill
3440e1ca7788SDave Young  * @size:	allocation size
3441e1ca7788SDave Young  * @node:	numa node
3442e1ca7788SDave Young  *
3443e1ca7788SDave Young  * Allocate enough pages to cover @size from the page level
3444e1ca7788SDave Young  * allocator and map them into contiguous kernel virtual space.
3445e1ca7788SDave Young  * The memory allocated is set to zero.
3446e1ca7788SDave Young  *
3447a862f68aSMike Rapoport  * Return: pointer to the allocated memory or %NULL on error
3448e1ca7788SDave Young  */
3449e1ca7788SDave Young void *vzalloc_node(unsigned long size, int node)
3450e1ca7788SDave Young {
34514d39d728SChristoph Hellwig 	return __vmalloc_node(size, 1, GFP_KERNEL | __GFP_ZERO, node,
34524d39d728SChristoph Hellwig 				__builtin_return_address(0));
3453e1ca7788SDave Young }
3454e1ca7788SDave Young EXPORT_SYMBOL(vzalloc_node);
3455e1ca7788SDave Young 
34560d08e0d3SAndi Kleen #if defined(CONFIG_64BIT) && defined(CONFIG_ZONE_DMA32)
3457698d0831SMichal Hocko #define GFP_VMALLOC32 (GFP_DMA32 | GFP_KERNEL)
34580d08e0d3SAndi Kleen #elif defined(CONFIG_64BIT) && defined(CONFIG_ZONE_DMA)
3459698d0831SMichal Hocko #define GFP_VMALLOC32 (GFP_DMA | GFP_KERNEL)
34600d08e0d3SAndi Kleen #else
3461698d0831SMichal Hocko /*
3462698d0831SMichal Hocko  * 64b systems should always have either DMA or DMA32 zones. For others
3463698d0831SMichal Hocko  * GFP_DMA32 should do the right thing and use the normal zone.
3464698d0831SMichal Hocko  */
346568d68ff6SZhiyuan Dai #define GFP_VMALLOC32 (GFP_DMA32 | GFP_KERNEL)
34660d08e0d3SAndi Kleen #endif
34670d08e0d3SAndi Kleen 
34681da177e4SLinus Torvalds /**
34691da177e4SLinus Torvalds  * vmalloc_32 - allocate virtually contiguous memory (32bit addressable)
34701da177e4SLinus Torvalds  * @size:	allocation size
34711da177e4SLinus Torvalds  *
34721da177e4SLinus Torvalds  * Allocate enough 32bit PA addressable pages to cover @size from the
34731da177e4SLinus Torvalds  * page level allocator and map them into contiguous kernel virtual space.
3474a862f68aSMike Rapoport  *
3475a862f68aSMike Rapoport  * Return: pointer to the allocated memory or %NULL on error
34761da177e4SLinus Torvalds  */
34771da177e4SLinus Torvalds void *vmalloc_32(unsigned long size)
34781da177e4SLinus Torvalds {
3479f38fcb9cSChristoph Hellwig 	return __vmalloc_node(size, 1, GFP_VMALLOC32, NUMA_NO_NODE,
3480f38fcb9cSChristoph Hellwig 			__builtin_return_address(0));
34811da177e4SLinus Torvalds }
34821da177e4SLinus Torvalds EXPORT_SYMBOL(vmalloc_32);
34831da177e4SLinus Torvalds 
348483342314SNick Piggin /**
3485ead04089SRolf Eike Beer  * vmalloc_32_user - allocate zeroed virtually contiguous 32bit memory
348683342314SNick Piggin  * @size:	     allocation size
3487ead04089SRolf Eike Beer  *
3488ead04089SRolf Eike Beer  * The resulting memory area is 32bit addressable and zeroed so it can be
3489ead04089SRolf Eike Beer  * mapped to userspace without leaking data.
3490a862f68aSMike Rapoport  *
3491a862f68aSMike Rapoport  * Return: pointer to the allocated memory or %NULL on error
349283342314SNick Piggin  */
349383342314SNick Piggin void *vmalloc_32_user(unsigned long size)
349483342314SNick Piggin {
3495bc84c535SRoman Penyaev 	return __vmalloc_node_range(size, SHMLBA,  VMALLOC_START, VMALLOC_END,
3496bc84c535SRoman Penyaev 				    GFP_VMALLOC32 | __GFP_ZERO, PAGE_KERNEL,
3497bc84c535SRoman Penyaev 				    VM_USERMAP, NUMA_NO_NODE,
34985a82ac71SRoman Penyaev 				    __builtin_return_address(0));
349983342314SNick Piggin }
350083342314SNick Piggin EXPORT_SYMBOL(vmalloc_32_user);
350183342314SNick Piggin 
3502d0107eb0SKAMEZAWA Hiroyuki /*
35034c91c07cSLorenzo Stoakes  * Atomically zero bytes in the iterator.
35044c91c07cSLorenzo Stoakes  *
35054c91c07cSLorenzo Stoakes  * Returns the number of zeroed bytes.
3506d0107eb0SKAMEZAWA Hiroyuki  */
35074c91c07cSLorenzo Stoakes static size_t zero_iter(struct iov_iter *iter, size_t count)
3508d0107eb0SKAMEZAWA Hiroyuki {
35094c91c07cSLorenzo Stoakes 	size_t remains = count;
3510d0107eb0SKAMEZAWA Hiroyuki 
35114c91c07cSLorenzo Stoakes 	while (remains > 0) {
35124c91c07cSLorenzo Stoakes 		size_t num, copied;
35134c91c07cSLorenzo Stoakes 
35144c91c07cSLorenzo Stoakes 		num = remains < PAGE_SIZE ? remains : PAGE_SIZE;
35154c91c07cSLorenzo Stoakes 		copied = copy_page_to_iter_nofault(ZERO_PAGE(0), 0, num, iter);
35164c91c07cSLorenzo Stoakes 		remains -= copied;
35174c91c07cSLorenzo Stoakes 
35184c91c07cSLorenzo Stoakes 		if (copied < num)
35194c91c07cSLorenzo Stoakes 			break;
35204c91c07cSLorenzo Stoakes 	}
35214c91c07cSLorenzo Stoakes 
35224c91c07cSLorenzo Stoakes 	return count - remains;
35234c91c07cSLorenzo Stoakes }
35244c91c07cSLorenzo Stoakes 
35254c91c07cSLorenzo Stoakes /*
35264c91c07cSLorenzo Stoakes  * small helper routine, copy contents to iter from addr.
35274c91c07cSLorenzo Stoakes  * If the page is not present, fill zero.
35284c91c07cSLorenzo Stoakes  *
35294c91c07cSLorenzo Stoakes  * Returns the number of copied bytes.
35304c91c07cSLorenzo Stoakes  */
35314c91c07cSLorenzo Stoakes static size_t aligned_vread_iter(struct iov_iter *iter,
35324c91c07cSLorenzo Stoakes 				 const char *addr, size_t count)
35334c91c07cSLorenzo Stoakes {
35344c91c07cSLorenzo Stoakes 	size_t remains = count;
35354c91c07cSLorenzo Stoakes 	struct page *page;
35364c91c07cSLorenzo Stoakes 
35374c91c07cSLorenzo Stoakes 	while (remains > 0) {
3538d0107eb0SKAMEZAWA Hiroyuki 		unsigned long offset, length;
35394c91c07cSLorenzo Stoakes 		size_t copied = 0;
3540d0107eb0SKAMEZAWA Hiroyuki 
3541891c49abSAlexander Kuleshov 		offset = offset_in_page(addr);
3542d0107eb0SKAMEZAWA Hiroyuki 		length = PAGE_SIZE - offset;
35434c91c07cSLorenzo Stoakes 		if (length > remains)
35444c91c07cSLorenzo Stoakes 			length = remains;
35454c91c07cSLorenzo Stoakes 		page = vmalloc_to_page(addr);
3546d0107eb0SKAMEZAWA Hiroyuki 		/*
35474c91c07cSLorenzo Stoakes 		 * To do safe access to this _mapped_ area, we need lock. But
35484c91c07cSLorenzo Stoakes 		 * adding lock here means that we need to add overhead of
35494c91c07cSLorenzo Stoakes 		 * vmalloc()/vfree() calls for this _debug_ interface, rarely
35504c91c07cSLorenzo Stoakes 		 * used. Instead of that, we'll use an local mapping via
35514c91c07cSLorenzo Stoakes 		 * copy_page_to_iter_nofault() and accept a small overhead in
35524c91c07cSLorenzo Stoakes 		 * this access function.
3553d0107eb0SKAMEZAWA Hiroyuki 		 */
35544c91c07cSLorenzo Stoakes 		if (page)
35554c91c07cSLorenzo Stoakes 			copied = copy_page_to_iter_nofault(page, offset,
35564c91c07cSLorenzo Stoakes 							   length, iter);
35574c91c07cSLorenzo Stoakes 		else
35584c91c07cSLorenzo Stoakes 			copied = zero_iter(iter, length);
3559d0107eb0SKAMEZAWA Hiroyuki 
35604c91c07cSLorenzo Stoakes 		addr += copied;
35614c91c07cSLorenzo Stoakes 		remains -= copied;
35624c91c07cSLorenzo Stoakes 
35634c91c07cSLorenzo Stoakes 		if (copied != length)
35644c91c07cSLorenzo Stoakes 			break;
3565d0107eb0SKAMEZAWA Hiroyuki 	}
3566d0107eb0SKAMEZAWA Hiroyuki 
35674c91c07cSLorenzo Stoakes 	return count - remains;
35684c91c07cSLorenzo Stoakes }
35694c91c07cSLorenzo Stoakes 
35704c91c07cSLorenzo Stoakes /*
35714c91c07cSLorenzo Stoakes  * Read from a vm_map_ram region of memory.
35724c91c07cSLorenzo Stoakes  *
35734c91c07cSLorenzo Stoakes  * Returns the number of copied bytes.
35744c91c07cSLorenzo Stoakes  */
35754c91c07cSLorenzo Stoakes static size_t vmap_ram_vread_iter(struct iov_iter *iter, const char *addr,
35764c91c07cSLorenzo Stoakes 				  size_t count, unsigned long flags)
357706c89946SBaoquan He {
357806c89946SBaoquan He 	char *start;
357906c89946SBaoquan He 	struct vmap_block *vb;
3580*062eacf5SUladzislau Rezki (Sony) 	struct xarray *xa;
358106c89946SBaoquan He 	unsigned long offset;
35824c91c07cSLorenzo Stoakes 	unsigned int rs, re;
35834c91c07cSLorenzo Stoakes 	size_t remains, n;
358406c89946SBaoquan He 
358506c89946SBaoquan He 	/*
358606c89946SBaoquan He 	 * If it's area created by vm_map_ram() interface directly, but
358706c89946SBaoquan He 	 * not further subdividing and delegating management to vmap_block,
358806c89946SBaoquan He 	 * handle it here.
358906c89946SBaoquan He 	 */
35904c91c07cSLorenzo Stoakes 	if (!(flags & VMAP_BLOCK))
35914c91c07cSLorenzo Stoakes 		return aligned_vread_iter(iter, addr, count);
35924c91c07cSLorenzo Stoakes 
35934c91c07cSLorenzo Stoakes 	remains = count;
359406c89946SBaoquan He 
359506c89946SBaoquan He 	/*
359606c89946SBaoquan He 	 * Area is split into regions and tracked with vmap_block, read out
359706c89946SBaoquan He 	 * each region and zero fill the hole between regions.
359806c89946SBaoquan He 	 */
3599*062eacf5SUladzislau Rezki (Sony) 	xa = addr_to_vb_xarray((unsigned long) addr);
3600*062eacf5SUladzislau Rezki (Sony) 	vb = xa_load(xa, addr_to_vb_idx((unsigned long)addr));
360106c89946SBaoquan He 	if (!vb)
36024c91c07cSLorenzo Stoakes 		goto finished_zero;
360306c89946SBaoquan He 
360406c89946SBaoquan He 	spin_lock(&vb->lock);
360506c89946SBaoquan He 	if (bitmap_empty(vb->used_map, VMAP_BBMAP_BITS)) {
360606c89946SBaoquan He 		spin_unlock(&vb->lock);
36074c91c07cSLorenzo Stoakes 		goto finished_zero;
36084c91c07cSLorenzo Stoakes 	}
36094c91c07cSLorenzo Stoakes 
36104c91c07cSLorenzo Stoakes 	for_each_set_bitrange(rs, re, vb->used_map, VMAP_BBMAP_BITS) {
36114c91c07cSLorenzo Stoakes 		size_t copied;
36124c91c07cSLorenzo Stoakes 
36134c91c07cSLorenzo Stoakes 		if (remains == 0)
36144c91c07cSLorenzo Stoakes 			goto finished;
36154c91c07cSLorenzo Stoakes 
36164c91c07cSLorenzo Stoakes 		start = vmap_block_vaddr(vb->va->va_start, rs);
36174c91c07cSLorenzo Stoakes 
36184c91c07cSLorenzo Stoakes 		if (addr < start) {
36194c91c07cSLorenzo Stoakes 			size_t to_zero = min_t(size_t, start - addr, remains);
36204c91c07cSLorenzo Stoakes 			size_t zeroed = zero_iter(iter, to_zero);
36214c91c07cSLorenzo Stoakes 
36224c91c07cSLorenzo Stoakes 			addr += zeroed;
36234c91c07cSLorenzo Stoakes 			remains -= zeroed;
36244c91c07cSLorenzo Stoakes 
36254c91c07cSLorenzo Stoakes 			if (remains == 0 || zeroed != to_zero)
362606c89946SBaoquan He 				goto finished;
362706c89946SBaoquan He 		}
36284c91c07cSLorenzo Stoakes 
362906c89946SBaoquan He 		/*it could start reading from the middle of used region*/
363006c89946SBaoquan He 		offset = offset_in_page(addr);
363106c89946SBaoquan He 		n = ((re - rs + 1) << PAGE_SHIFT) - offset;
36324c91c07cSLorenzo Stoakes 		if (n > remains)
36334c91c07cSLorenzo Stoakes 			n = remains;
363406c89946SBaoquan He 
36354c91c07cSLorenzo Stoakes 		copied = aligned_vread_iter(iter, start + offset, n);
36364c91c07cSLorenzo Stoakes 
36374c91c07cSLorenzo Stoakes 		addr += copied;
36384c91c07cSLorenzo Stoakes 		remains -= copied;
36394c91c07cSLorenzo Stoakes 
36404c91c07cSLorenzo Stoakes 		if (copied != n)
36414c91c07cSLorenzo Stoakes 			goto finished;
364206c89946SBaoquan He 	}
36434c91c07cSLorenzo Stoakes 
364406c89946SBaoquan He 	spin_unlock(&vb->lock);
364506c89946SBaoquan He 
36464c91c07cSLorenzo Stoakes finished_zero:
364706c89946SBaoquan He 	/* zero-fill the left dirty or free regions */
36484c91c07cSLorenzo Stoakes 	return count - remains + zero_iter(iter, remains);
36494c91c07cSLorenzo Stoakes finished:
36504c91c07cSLorenzo Stoakes 	/* We couldn't copy/zero everything */
36514c91c07cSLorenzo Stoakes 	spin_unlock(&vb->lock);
36524c91c07cSLorenzo Stoakes 	return count - remains;
365306c89946SBaoquan He }
365406c89946SBaoquan He 
3655d0107eb0SKAMEZAWA Hiroyuki /**
36564c91c07cSLorenzo Stoakes  * vread_iter() - read vmalloc area in a safe way to an iterator.
36574c91c07cSLorenzo Stoakes  * @iter:         the iterator to which data should be written.
3658d0107eb0SKAMEZAWA Hiroyuki  * @addr:         vm address.
3659d0107eb0SKAMEZAWA Hiroyuki  * @count:        number of bytes to be read.
3660d0107eb0SKAMEZAWA Hiroyuki  *
3661d0107eb0SKAMEZAWA Hiroyuki  * This function checks that addr is a valid vmalloc'ed area, and
3662d0107eb0SKAMEZAWA Hiroyuki  * copy data from that area to a given buffer. If the given memory range
3663d0107eb0SKAMEZAWA Hiroyuki  * of [addr...addr+count) includes some valid address, data is copied to
3664d0107eb0SKAMEZAWA Hiroyuki  * proper area of @buf. If there are memory holes, they'll be zero-filled.
3665d0107eb0SKAMEZAWA Hiroyuki  * IOREMAP area is treated as memory hole and no copy is done.
3666d0107eb0SKAMEZAWA Hiroyuki  *
3667d0107eb0SKAMEZAWA Hiroyuki  * If [addr...addr+count) doesn't includes any intersects with alive
3668a8e5202dSCong Wang  * vm_struct area, returns 0. @buf should be kernel's buffer.
3669d0107eb0SKAMEZAWA Hiroyuki  *
3670d0107eb0SKAMEZAWA Hiroyuki  * Note: In usual ops, vread() is never necessary because the caller
3671d0107eb0SKAMEZAWA Hiroyuki  * should know vmalloc() area is valid and can use memcpy().
3672d0107eb0SKAMEZAWA Hiroyuki  * This is for routines which have to access vmalloc area without
3673bbcd53c9SDavid Hildenbrand  * any information, as /proc/kcore.
3674a862f68aSMike Rapoport  *
3675a862f68aSMike Rapoport  * Return: number of bytes for which addr and buf should be increased
3676a862f68aSMike Rapoport  * (same number as @count) or %0 if [addr...addr+count) doesn't
3677a862f68aSMike Rapoport  * include any intersection with valid vmalloc area
3678d0107eb0SKAMEZAWA Hiroyuki  */
36794c91c07cSLorenzo Stoakes long vread_iter(struct iov_iter *iter, const char *addr, size_t count)
36801da177e4SLinus Torvalds {
3681e81ce85fSJoonsoo Kim 	struct vmap_area *va;
3682e81ce85fSJoonsoo Kim 	struct vm_struct *vm;
36834c91c07cSLorenzo Stoakes 	char *vaddr;
36844c91c07cSLorenzo Stoakes 	size_t n, size, flags, remains;
36851da177e4SLinus Torvalds 
36864aff1dc4SAndrey Konovalov 	addr = kasan_reset_tag(addr);
36874aff1dc4SAndrey Konovalov 
36881da177e4SLinus Torvalds 	/* Don't allow overflow */
36891da177e4SLinus Torvalds 	if ((unsigned long) addr + count < count)
36901da177e4SLinus Torvalds 		count = -(unsigned long) addr;
36911da177e4SLinus Torvalds 
36924c91c07cSLorenzo Stoakes 	remains = count;
36934c91c07cSLorenzo Stoakes 
3694e81ce85fSJoonsoo Kim 	spin_lock(&vmap_area_lock);
3695f181234aSChen Wandun 	va = find_vmap_area_exceed_addr((unsigned long)addr);
3696f608788cSSerapheim Dimitropoulos 	if (!va)
36974c91c07cSLorenzo Stoakes 		goto finished_zero;
3698f181234aSChen Wandun 
3699f181234aSChen Wandun 	/* no intersects with alive vmap_area */
37004c91c07cSLorenzo Stoakes 	if ((unsigned long)addr + remains <= va->va_start)
37014c91c07cSLorenzo Stoakes 		goto finished_zero;
3702f181234aSChen Wandun 
3703f608788cSSerapheim Dimitropoulos 	list_for_each_entry_from(va, &vmap_area_list, list) {
37044c91c07cSLorenzo Stoakes 		size_t copied;
37054c91c07cSLorenzo Stoakes 
37064c91c07cSLorenzo Stoakes 		if (remains == 0)
37074c91c07cSLorenzo Stoakes 			goto finished;
3708e81ce85fSJoonsoo Kim 
370906c89946SBaoquan He 		vm = va->vm;
371006c89946SBaoquan He 		flags = va->flags & VMAP_FLAGS_MASK;
371106c89946SBaoquan He 		/*
371206c89946SBaoquan He 		 * VMAP_BLOCK indicates a sub-type of vm_map_ram area, need
371306c89946SBaoquan He 		 * be set together with VMAP_RAM.
371406c89946SBaoquan He 		 */
371506c89946SBaoquan He 		WARN_ON(flags == VMAP_BLOCK);
371606c89946SBaoquan He 
371706c89946SBaoquan He 		if (!vm && !flags)
3718e81ce85fSJoonsoo Kim 			continue;
3719e81ce85fSJoonsoo Kim 
372030a7a9b1SBaoquan He 		if (vm && (vm->flags & VM_UNINITIALIZED))
372130a7a9b1SBaoquan He 			continue;
37224c91c07cSLorenzo Stoakes 
372330a7a9b1SBaoquan He 		/* Pair with smp_wmb() in clear_vm_uninitialized_flag() */
372430a7a9b1SBaoquan He 		smp_rmb();
372530a7a9b1SBaoquan He 
372606c89946SBaoquan He 		vaddr = (char *) va->va_start;
372706c89946SBaoquan He 		size = vm ? get_vm_area_size(vm) : va_size(va);
372806c89946SBaoquan He 
372906c89946SBaoquan He 		if (addr >= vaddr + size)
37301da177e4SLinus Torvalds 			continue;
37314c91c07cSLorenzo Stoakes 
37324c91c07cSLorenzo Stoakes 		if (addr < vaddr) {
37334c91c07cSLorenzo Stoakes 			size_t to_zero = min_t(size_t, vaddr - addr, remains);
37344c91c07cSLorenzo Stoakes 			size_t zeroed = zero_iter(iter, to_zero);
37354c91c07cSLorenzo Stoakes 
37364c91c07cSLorenzo Stoakes 			addr += zeroed;
37374c91c07cSLorenzo Stoakes 			remains -= zeroed;
37384c91c07cSLorenzo Stoakes 
37394c91c07cSLorenzo Stoakes 			if (remains == 0 || zeroed != to_zero)
37401da177e4SLinus Torvalds 				goto finished;
37411da177e4SLinus Torvalds 		}
37424c91c07cSLorenzo Stoakes 
374306c89946SBaoquan He 		n = vaddr + size - addr;
37444c91c07cSLorenzo Stoakes 		if (n > remains)
37454c91c07cSLorenzo Stoakes 			n = remains;
374606c89946SBaoquan He 
374706c89946SBaoquan He 		if (flags & VMAP_RAM)
37484c91c07cSLorenzo Stoakes 			copied = vmap_ram_vread_iter(iter, addr, n, flags);
374906c89946SBaoquan He 		else if (!(vm->flags & VM_IOREMAP))
37504c91c07cSLorenzo Stoakes 			copied = aligned_vread_iter(iter, addr, n);
3751d0107eb0SKAMEZAWA Hiroyuki 		else /* IOREMAP area is treated as memory hole */
37524c91c07cSLorenzo Stoakes 			copied = zero_iter(iter, n);
37534c91c07cSLorenzo Stoakes 
37544c91c07cSLorenzo Stoakes 		addr += copied;
37554c91c07cSLorenzo Stoakes 		remains -= copied;
37564c91c07cSLorenzo Stoakes 
37574c91c07cSLorenzo Stoakes 		if (copied != n)
37584c91c07cSLorenzo Stoakes 			goto finished;
37591da177e4SLinus Torvalds 	}
37604c91c07cSLorenzo Stoakes 
37614c91c07cSLorenzo Stoakes finished_zero:
37624c91c07cSLorenzo Stoakes 	spin_unlock(&vmap_area_lock);
37634c91c07cSLorenzo Stoakes 	/* zero-fill memory holes */
37644c91c07cSLorenzo Stoakes 	return count - remains + zero_iter(iter, remains);
37651da177e4SLinus Torvalds finished:
37664c91c07cSLorenzo Stoakes 	/* Nothing remains, or We couldn't copy/zero everything. */
3767e81ce85fSJoonsoo Kim 	spin_unlock(&vmap_area_lock);
3768d0107eb0SKAMEZAWA Hiroyuki 
37694c91c07cSLorenzo Stoakes 	return count - remains;
37701da177e4SLinus Torvalds }
37711da177e4SLinus Torvalds 
3772d0107eb0SKAMEZAWA Hiroyuki /**
3773e69e9d4aSHATAYAMA Daisuke  * remap_vmalloc_range_partial - map vmalloc pages to userspace
3774e69e9d4aSHATAYAMA Daisuke  * @vma:		vma to cover
3775e69e9d4aSHATAYAMA Daisuke  * @uaddr:		target user address to start at
3776e69e9d4aSHATAYAMA Daisuke  * @kaddr:		virtual address of vmalloc kernel memory
3777bdebd6a2SJann Horn  * @pgoff:		offset from @kaddr to start at
3778e69e9d4aSHATAYAMA Daisuke  * @size:		size of map area
3779e69e9d4aSHATAYAMA Daisuke  *
3780e69e9d4aSHATAYAMA Daisuke  * Returns:	0 for success, -Exxx on failure
3781e69e9d4aSHATAYAMA Daisuke  *
3782e69e9d4aSHATAYAMA Daisuke  * This function checks that @kaddr is a valid vmalloc'ed area,
3783e69e9d4aSHATAYAMA Daisuke  * and that it is big enough to cover the range starting at
3784e69e9d4aSHATAYAMA Daisuke  * @uaddr in @vma. Will return failure if that criteria isn't
3785e69e9d4aSHATAYAMA Daisuke  * met.
3786e69e9d4aSHATAYAMA Daisuke  *
3787e69e9d4aSHATAYAMA Daisuke  * Similar to remap_pfn_range() (see mm/memory.c)
3788e69e9d4aSHATAYAMA Daisuke  */
3789e69e9d4aSHATAYAMA Daisuke int remap_vmalloc_range_partial(struct vm_area_struct *vma, unsigned long uaddr,
3790bdebd6a2SJann Horn 				void *kaddr, unsigned long pgoff,
3791bdebd6a2SJann Horn 				unsigned long size)
3792e69e9d4aSHATAYAMA Daisuke {
3793e69e9d4aSHATAYAMA Daisuke 	struct vm_struct *area;
3794bdebd6a2SJann Horn 	unsigned long off;
3795bdebd6a2SJann Horn 	unsigned long end_index;
3796bdebd6a2SJann Horn 
3797bdebd6a2SJann Horn 	if (check_shl_overflow(pgoff, PAGE_SHIFT, &off))
3798bdebd6a2SJann Horn 		return -EINVAL;
3799e69e9d4aSHATAYAMA Daisuke 
3800e69e9d4aSHATAYAMA Daisuke 	size = PAGE_ALIGN(size);
3801e69e9d4aSHATAYAMA Daisuke 
3802e69e9d4aSHATAYAMA Daisuke 	if (!PAGE_ALIGNED(uaddr) || !PAGE_ALIGNED(kaddr))
3803e69e9d4aSHATAYAMA Daisuke 		return -EINVAL;
3804e69e9d4aSHATAYAMA Daisuke 
3805e69e9d4aSHATAYAMA Daisuke 	area = find_vm_area(kaddr);
3806e69e9d4aSHATAYAMA Daisuke 	if (!area)
3807e69e9d4aSHATAYAMA Daisuke 		return -EINVAL;
3808e69e9d4aSHATAYAMA Daisuke 
3809fe9041c2SChristoph Hellwig 	if (!(area->flags & (VM_USERMAP | VM_DMA_COHERENT)))
3810e69e9d4aSHATAYAMA Daisuke 		return -EINVAL;
3811e69e9d4aSHATAYAMA Daisuke 
3812bdebd6a2SJann Horn 	if (check_add_overflow(size, off, &end_index) ||
3813bdebd6a2SJann Horn 	    end_index > get_vm_area_size(area))
3814e69e9d4aSHATAYAMA Daisuke 		return -EINVAL;
3815bdebd6a2SJann Horn 	kaddr += off;
3816e69e9d4aSHATAYAMA Daisuke 
3817e69e9d4aSHATAYAMA Daisuke 	do {
3818e69e9d4aSHATAYAMA Daisuke 		struct page *page = vmalloc_to_page(kaddr);
3819e69e9d4aSHATAYAMA Daisuke 		int ret;
3820e69e9d4aSHATAYAMA Daisuke 
3821e69e9d4aSHATAYAMA Daisuke 		ret = vm_insert_page(vma, uaddr, page);
3822e69e9d4aSHATAYAMA Daisuke 		if (ret)
3823e69e9d4aSHATAYAMA Daisuke 			return ret;
3824e69e9d4aSHATAYAMA Daisuke 
3825e69e9d4aSHATAYAMA Daisuke 		uaddr += PAGE_SIZE;
3826e69e9d4aSHATAYAMA Daisuke 		kaddr += PAGE_SIZE;
3827e69e9d4aSHATAYAMA Daisuke 		size -= PAGE_SIZE;
3828e69e9d4aSHATAYAMA Daisuke 	} while (size > 0);
3829e69e9d4aSHATAYAMA Daisuke 
38301c71222eSSuren Baghdasaryan 	vm_flags_set(vma, VM_DONTEXPAND | VM_DONTDUMP);
3831e69e9d4aSHATAYAMA Daisuke 
3832e69e9d4aSHATAYAMA Daisuke 	return 0;
3833e69e9d4aSHATAYAMA Daisuke }
3834e69e9d4aSHATAYAMA Daisuke 
3835e69e9d4aSHATAYAMA Daisuke /**
383683342314SNick Piggin  * remap_vmalloc_range - map vmalloc pages to userspace
383783342314SNick Piggin  * @vma:		vma to cover (map full range of vma)
383883342314SNick Piggin  * @addr:		vmalloc memory
383983342314SNick Piggin  * @pgoff:		number of pages into addr before first page to map
38407682486bSRandy Dunlap  *
38417682486bSRandy Dunlap  * Returns:	0 for success, -Exxx on failure
384283342314SNick Piggin  *
384383342314SNick Piggin  * This function checks that addr is a valid vmalloc'ed area, and
384483342314SNick Piggin  * that it is big enough to cover the vma. Will return failure if
384583342314SNick Piggin  * that criteria isn't met.
384683342314SNick Piggin  *
384772fd4a35SRobert P. J. Day  * Similar to remap_pfn_range() (see mm/memory.c)
384883342314SNick Piggin  */
384983342314SNick Piggin int remap_vmalloc_range(struct vm_area_struct *vma, void *addr,
385083342314SNick Piggin 						unsigned long pgoff)
385183342314SNick Piggin {
3852e69e9d4aSHATAYAMA Daisuke 	return remap_vmalloc_range_partial(vma, vma->vm_start,
3853bdebd6a2SJann Horn 					   addr, pgoff,
3854e69e9d4aSHATAYAMA Daisuke 					   vma->vm_end - vma->vm_start);
385583342314SNick Piggin }
385683342314SNick Piggin EXPORT_SYMBOL(remap_vmalloc_range);
385783342314SNick Piggin 
38585f4352fbSJeremy Fitzhardinge void free_vm_area(struct vm_struct *area)
38595f4352fbSJeremy Fitzhardinge {
38605f4352fbSJeremy Fitzhardinge 	struct vm_struct *ret;
38615f4352fbSJeremy Fitzhardinge 	ret = remove_vm_area(area->addr);
38625f4352fbSJeremy Fitzhardinge 	BUG_ON(ret != area);
38635f4352fbSJeremy Fitzhardinge 	kfree(area);
38645f4352fbSJeremy Fitzhardinge }
38655f4352fbSJeremy Fitzhardinge EXPORT_SYMBOL_GPL(free_vm_area);
3866a10aa579SChristoph Lameter 
38674f8b02b4STejun Heo #ifdef CONFIG_SMP
3868ca23e405STejun Heo static struct vmap_area *node_to_va(struct rb_node *n)
3869ca23e405STejun Heo {
38704583e773SGeliang Tang 	return rb_entry_safe(n, struct vmap_area, rb_node);
3871ca23e405STejun Heo }
3872ca23e405STejun Heo 
3873ca23e405STejun Heo /**
387468ad4a33SUladzislau Rezki (Sony)  * pvm_find_va_enclose_addr - find the vmap_area @addr belongs to
387568ad4a33SUladzislau Rezki (Sony)  * @addr: target address
3876ca23e405STejun Heo  *
387768ad4a33SUladzislau Rezki (Sony)  * Returns: vmap_area if it is found. If there is no such area
387868ad4a33SUladzislau Rezki (Sony)  *   the first highest(reverse order) vmap_area is returned
387968ad4a33SUladzislau Rezki (Sony)  *   i.e. va->va_start < addr && va->va_end < addr or NULL
388068ad4a33SUladzislau Rezki (Sony)  *   if there are no any areas before @addr.
3881ca23e405STejun Heo  */
388268ad4a33SUladzislau Rezki (Sony) static struct vmap_area *
388368ad4a33SUladzislau Rezki (Sony) pvm_find_va_enclose_addr(unsigned long addr)
3884ca23e405STejun Heo {
388568ad4a33SUladzislau Rezki (Sony) 	struct vmap_area *va, *tmp;
388668ad4a33SUladzislau Rezki (Sony) 	struct rb_node *n;
388768ad4a33SUladzislau Rezki (Sony) 
388868ad4a33SUladzislau Rezki (Sony) 	n = free_vmap_area_root.rb_node;
388968ad4a33SUladzislau Rezki (Sony) 	va = NULL;
3890ca23e405STejun Heo 
3891ca23e405STejun Heo 	while (n) {
389268ad4a33SUladzislau Rezki (Sony) 		tmp = rb_entry(n, struct vmap_area, rb_node);
389368ad4a33SUladzislau Rezki (Sony) 		if (tmp->va_start <= addr) {
389468ad4a33SUladzislau Rezki (Sony) 			va = tmp;
389568ad4a33SUladzislau Rezki (Sony) 			if (tmp->va_end >= addr)
3896ca23e405STejun Heo 				break;
3897ca23e405STejun Heo 
389868ad4a33SUladzislau Rezki (Sony) 			n = n->rb_right;
3899ca23e405STejun Heo 		} else {
390068ad4a33SUladzislau Rezki (Sony) 			n = n->rb_left;
3901ca23e405STejun Heo 		}
390268ad4a33SUladzislau Rezki (Sony) 	}
390368ad4a33SUladzislau Rezki (Sony) 
390468ad4a33SUladzislau Rezki (Sony) 	return va;
3905ca23e405STejun Heo }
3906ca23e405STejun Heo 
3907ca23e405STejun Heo /**
390868ad4a33SUladzislau Rezki (Sony)  * pvm_determine_end_from_reverse - find the highest aligned address
390968ad4a33SUladzislau Rezki (Sony)  * of free block below VMALLOC_END
391068ad4a33SUladzislau Rezki (Sony)  * @va:
391168ad4a33SUladzislau Rezki (Sony)  *   in - the VA we start the search(reverse order);
391268ad4a33SUladzislau Rezki (Sony)  *   out - the VA with the highest aligned end address.
3913799fa85dSAlex Shi  * @align: alignment for required highest address
3914ca23e405STejun Heo  *
391568ad4a33SUladzislau Rezki (Sony)  * Returns: determined end address within vmap_area
3916ca23e405STejun Heo  */
391768ad4a33SUladzislau Rezki (Sony) static unsigned long
391868ad4a33SUladzislau Rezki (Sony) pvm_determine_end_from_reverse(struct vmap_area **va, unsigned long align)
3919ca23e405STejun Heo {
392068ad4a33SUladzislau Rezki (Sony) 	unsigned long vmalloc_end = VMALLOC_END & ~(align - 1);
3921ca23e405STejun Heo 	unsigned long addr;
3922ca23e405STejun Heo 
392368ad4a33SUladzislau Rezki (Sony) 	if (likely(*va)) {
392468ad4a33SUladzislau Rezki (Sony) 		list_for_each_entry_from_reverse((*va),
392568ad4a33SUladzislau Rezki (Sony) 				&free_vmap_area_list, list) {
392668ad4a33SUladzislau Rezki (Sony) 			addr = min((*va)->va_end & ~(align - 1), vmalloc_end);
392768ad4a33SUladzislau Rezki (Sony) 			if ((*va)->va_start < addr)
392868ad4a33SUladzislau Rezki (Sony) 				return addr;
392968ad4a33SUladzislau Rezki (Sony) 		}
3930ca23e405STejun Heo 	}
3931ca23e405STejun Heo 
393268ad4a33SUladzislau Rezki (Sony) 	return 0;
3933ca23e405STejun Heo }
3934ca23e405STejun Heo 
3935ca23e405STejun Heo /**
3936ca23e405STejun Heo  * pcpu_get_vm_areas - allocate vmalloc areas for percpu allocator
3937ca23e405STejun Heo  * @offsets: array containing offset of each area
3938ca23e405STejun Heo  * @sizes: array containing size of each area
3939ca23e405STejun Heo  * @nr_vms: the number of areas to allocate
3940ca23e405STejun Heo  * @align: alignment, all entries in @offsets and @sizes must be aligned to this
3941ca23e405STejun Heo  *
3942ca23e405STejun Heo  * Returns: kmalloc'd vm_struct pointer array pointing to allocated
3943ca23e405STejun Heo  *	    vm_structs on success, %NULL on failure
3944ca23e405STejun Heo  *
3945ca23e405STejun Heo  * Percpu allocator wants to use congruent vm areas so that it can
3946ca23e405STejun Heo  * maintain the offsets among percpu areas.  This function allocates
3947ec3f64fcSDavid Rientjes  * congruent vmalloc areas for it with GFP_KERNEL.  These areas tend to
3948ec3f64fcSDavid Rientjes  * be scattered pretty far, distance between two areas easily going up
3949ec3f64fcSDavid Rientjes  * to gigabytes.  To avoid interacting with regular vmallocs, these
3950ec3f64fcSDavid Rientjes  * areas are allocated from top.
3951ca23e405STejun Heo  *
3952ca23e405STejun Heo  * Despite its complicated look, this allocator is rather simple. It
395368ad4a33SUladzislau Rezki (Sony)  * does everything top-down and scans free blocks from the end looking
395468ad4a33SUladzislau Rezki (Sony)  * for matching base. While scanning, if any of the areas do not fit the
395568ad4a33SUladzislau Rezki (Sony)  * base address is pulled down to fit the area. Scanning is repeated till
395668ad4a33SUladzislau Rezki (Sony)  * all the areas fit and then all necessary data structures are inserted
395768ad4a33SUladzislau Rezki (Sony)  * and the result is returned.
3958ca23e405STejun Heo  */
3959ca23e405STejun Heo struct vm_struct **pcpu_get_vm_areas(const unsigned long *offsets,
3960ca23e405STejun Heo 				     const size_t *sizes, int nr_vms,
3961ec3f64fcSDavid Rientjes 				     size_t align)
3962ca23e405STejun Heo {
3963ca23e405STejun Heo 	const unsigned long vmalloc_start = ALIGN(VMALLOC_START, align);
3964ca23e405STejun Heo 	const unsigned long vmalloc_end = VMALLOC_END & ~(align - 1);
396568ad4a33SUladzislau Rezki (Sony) 	struct vmap_area **vas, *va;
3966ca23e405STejun Heo 	struct vm_struct **vms;
3967ca23e405STejun Heo 	int area, area2, last_area, term_area;
3968253a496dSDaniel Axtens 	unsigned long base, start, size, end, last_end, orig_start, orig_end;
3969ca23e405STejun Heo 	bool purged = false;
3970ca23e405STejun Heo 
3971ca23e405STejun Heo 	/* verify parameters and allocate data structures */
3972891c49abSAlexander Kuleshov 	BUG_ON(offset_in_page(align) || !is_power_of_2(align));
3973ca23e405STejun Heo 	for (last_area = 0, area = 0; area < nr_vms; area++) {
3974ca23e405STejun Heo 		start = offsets[area];
3975ca23e405STejun Heo 		end = start + sizes[area];
3976ca23e405STejun Heo 
3977ca23e405STejun Heo 		/* is everything aligned properly? */
3978ca23e405STejun Heo 		BUG_ON(!IS_ALIGNED(offsets[area], align));
3979ca23e405STejun Heo 		BUG_ON(!IS_ALIGNED(sizes[area], align));
3980ca23e405STejun Heo 
3981ca23e405STejun Heo 		/* detect the area with the highest address */
3982ca23e405STejun Heo 		if (start > offsets[last_area])
3983ca23e405STejun Heo 			last_area = area;
3984ca23e405STejun Heo 
3985c568da28SWei Yang 		for (area2 = area + 1; area2 < nr_vms; area2++) {
3986ca23e405STejun Heo 			unsigned long start2 = offsets[area2];
3987ca23e405STejun Heo 			unsigned long end2 = start2 + sizes[area2];
3988ca23e405STejun Heo 
3989c568da28SWei Yang 			BUG_ON(start2 < end && start < end2);
3990ca23e405STejun Heo 		}
3991ca23e405STejun Heo 	}
3992ca23e405STejun Heo 	last_end = offsets[last_area] + sizes[last_area];
3993ca23e405STejun Heo 
3994ca23e405STejun Heo 	if (vmalloc_end - vmalloc_start < last_end) {
3995ca23e405STejun Heo 		WARN_ON(true);
3996ca23e405STejun Heo 		return NULL;
3997ca23e405STejun Heo 	}
3998ca23e405STejun Heo 
39994d67d860SThomas Meyer 	vms = kcalloc(nr_vms, sizeof(vms[0]), GFP_KERNEL);
40004d67d860SThomas Meyer 	vas = kcalloc(nr_vms, sizeof(vas[0]), GFP_KERNEL);
4001ca23e405STejun Heo 	if (!vas || !vms)
4002f1db7afdSKautuk Consul 		goto err_free2;
4003ca23e405STejun Heo 
4004ca23e405STejun Heo 	for (area = 0; area < nr_vms; area++) {
400568ad4a33SUladzislau Rezki (Sony) 		vas[area] = kmem_cache_zalloc(vmap_area_cachep, GFP_KERNEL);
4006ec3f64fcSDavid Rientjes 		vms[area] = kzalloc(sizeof(struct vm_struct), GFP_KERNEL);
4007ca23e405STejun Heo 		if (!vas[area] || !vms[area])
4008ca23e405STejun Heo 			goto err_free;
4009ca23e405STejun Heo 	}
4010ca23e405STejun Heo retry:
4011e36176beSUladzislau Rezki (Sony) 	spin_lock(&free_vmap_area_lock);
4012ca23e405STejun Heo 
4013ca23e405STejun Heo 	/* start scanning - we scan from the top, begin with the last area */
4014ca23e405STejun Heo 	area = term_area = last_area;
4015ca23e405STejun Heo 	start = offsets[area];
4016ca23e405STejun Heo 	end = start + sizes[area];
4017ca23e405STejun Heo 
401868ad4a33SUladzislau Rezki (Sony) 	va = pvm_find_va_enclose_addr(vmalloc_end);
401968ad4a33SUladzislau Rezki (Sony) 	base = pvm_determine_end_from_reverse(&va, align) - end;
4020ca23e405STejun Heo 
4021ca23e405STejun Heo 	while (true) {
4022ca23e405STejun Heo 		/*
4023ca23e405STejun Heo 		 * base might have underflowed, add last_end before
4024ca23e405STejun Heo 		 * comparing.
4025ca23e405STejun Heo 		 */
402668ad4a33SUladzislau Rezki (Sony) 		if (base + last_end < vmalloc_start + last_end)
402768ad4a33SUladzislau Rezki (Sony) 			goto overflow;
4028ca23e405STejun Heo 
4029ca23e405STejun Heo 		/*
403068ad4a33SUladzislau Rezki (Sony) 		 * Fitting base has not been found.
4031ca23e405STejun Heo 		 */
403268ad4a33SUladzislau Rezki (Sony) 		if (va == NULL)
403368ad4a33SUladzislau Rezki (Sony) 			goto overflow;
4034ca23e405STejun Heo 
4035ca23e405STejun Heo 		/*
4036d8cc323dSQiujun Huang 		 * If required width exceeds current VA block, move
40375336e52cSKuppuswamy Sathyanarayanan 		 * base downwards and then recheck.
40385336e52cSKuppuswamy Sathyanarayanan 		 */
40395336e52cSKuppuswamy Sathyanarayanan 		if (base + end > va->va_end) {
40405336e52cSKuppuswamy Sathyanarayanan 			base = pvm_determine_end_from_reverse(&va, align) - end;
40415336e52cSKuppuswamy Sathyanarayanan 			term_area = area;
40425336e52cSKuppuswamy Sathyanarayanan 			continue;
40435336e52cSKuppuswamy Sathyanarayanan 		}
40445336e52cSKuppuswamy Sathyanarayanan 
40455336e52cSKuppuswamy Sathyanarayanan 		/*
404668ad4a33SUladzislau Rezki (Sony) 		 * If this VA does not fit, move base downwards and recheck.
4047ca23e405STejun Heo 		 */
40485336e52cSKuppuswamy Sathyanarayanan 		if (base + start < va->va_start) {
404968ad4a33SUladzislau Rezki (Sony) 			va = node_to_va(rb_prev(&va->rb_node));
405068ad4a33SUladzislau Rezki (Sony) 			base = pvm_determine_end_from_reverse(&va, align) - end;
4051ca23e405STejun Heo 			term_area = area;
4052ca23e405STejun Heo 			continue;
4053ca23e405STejun Heo 		}
4054ca23e405STejun Heo 
4055ca23e405STejun Heo 		/*
4056ca23e405STejun Heo 		 * This area fits, move on to the previous one.  If
4057ca23e405STejun Heo 		 * the previous one is the terminal one, we're done.
4058ca23e405STejun Heo 		 */
4059ca23e405STejun Heo 		area = (area + nr_vms - 1) % nr_vms;
4060ca23e405STejun Heo 		if (area == term_area)
4061ca23e405STejun Heo 			break;
406268ad4a33SUladzislau Rezki (Sony) 
4063ca23e405STejun Heo 		start = offsets[area];
4064ca23e405STejun Heo 		end = start + sizes[area];
406568ad4a33SUladzislau Rezki (Sony) 		va = pvm_find_va_enclose_addr(base + end);
4066ca23e405STejun Heo 	}
406768ad4a33SUladzislau Rezki (Sony) 
4068ca23e405STejun Heo 	/* we've found a fitting base, insert all va's */
4069ca23e405STejun Heo 	for (area = 0; area < nr_vms; area++) {
407068ad4a33SUladzislau Rezki (Sony) 		int ret;
4071ca23e405STejun Heo 
407268ad4a33SUladzislau Rezki (Sony) 		start = base + offsets[area];
407368ad4a33SUladzislau Rezki (Sony) 		size = sizes[area];
407468ad4a33SUladzislau Rezki (Sony) 
407568ad4a33SUladzislau Rezki (Sony) 		va = pvm_find_va_enclose_addr(start);
407668ad4a33SUladzislau Rezki (Sony) 		if (WARN_ON_ONCE(va == NULL))
407768ad4a33SUladzislau Rezki (Sony) 			/* It is a BUG(), but trigger recovery instead. */
407868ad4a33SUladzislau Rezki (Sony) 			goto recovery;
407968ad4a33SUladzislau Rezki (Sony) 
4080f9863be4SUladzislau Rezki (Sony) 		ret = adjust_va_to_fit_type(&free_vmap_area_root,
4081f9863be4SUladzislau Rezki (Sony) 					    &free_vmap_area_list,
4082f9863be4SUladzislau Rezki (Sony) 					    va, start, size);
40831b23ff80SBaoquan He 		if (WARN_ON_ONCE(unlikely(ret)))
408468ad4a33SUladzislau Rezki (Sony) 			/* It is a BUG(), but trigger recovery instead. */
408568ad4a33SUladzislau Rezki (Sony) 			goto recovery;
408668ad4a33SUladzislau Rezki (Sony) 
408768ad4a33SUladzislau Rezki (Sony) 		/* Allocated area. */
408868ad4a33SUladzislau Rezki (Sony) 		va = vas[area];
408968ad4a33SUladzislau Rezki (Sony) 		va->va_start = start;
409068ad4a33SUladzislau Rezki (Sony) 		va->va_end = start + size;
4091ca23e405STejun Heo 	}
4092ca23e405STejun Heo 
4093e36176beSUladzislau Rezki (Sony) 	spin_unlock(&free_vmap_area_lock);
4094ca23e405STejun Heo 
4095253a496dSDaniel Axtens 	/* populate the kasan shadow space */
4096253a496dSDaniel Axtens 	for (area = 0; area < nr_vms; area++) {
4097253a496dSDaniel Axtens 		if (kasan_populate_vmalloc(vas[area]->va_start, sizes[area]))
4098253a496dSDaniel Axtens 			goto err_free_shadow;
4099253a496dSDaniel Axtens 	}
4100253a496dSDaniel Axtens 
4101ca23e405STejun Heo 	/* insert all vm's */
4102e36176beSUladzislau Rezki (Sony) 	spin_lock(&vmap_area_lock);
4103e36176beSUladzislau Rezki (Sony) 	for (area = 0; area < nr_vms; area++) {
4104e36176beSUladzislau Rezki (Sony) 		insert_vmap_area(vas[area], &vmap_area_root, &vmap_area_list);
4105e36176beSUladzislau Rezki (Sony) 
4106e36176beSUladzislau Rezki (Sony) 		setup_vmalloc_vm_locked(vms[area], vas[area], VM_ALLOC,
4107ca23e405STejun Heo 				 pcpu_get_vm_areas);
4108e36176beSUladzislau Rezki (Sony) 	}
4109e36176beSUladzislau Rezki (Sony) 	spin_unlock(&vmap_area_lock);
4110ca23e405STejun Heo 
411119f1c3acSAndrey Konovalov 	/*
411219f1c3acSAndrey Konovalov 	 * Mark allocated areas as accessible. Do it now as a best-effort
411319f1c3acSAndrey Konovalov 	 * approach, as they can be mapped outside of vmalloc code.
411423689e91SAndrey Konovalov 	 * With hardware tag-based KASAN, marking is skipped for
411523689e91SAndrey Konovalov 	 * non-VM_ALLOC mappings, see __kasan_unpoison_vmalloc().
411619f1c3acSAndrey Konovalov 	 */
41171d96320fSAndrey Konovalov 	for (area = 0; area < nr_vms; area++)
41181d96320fSAndrey Konovalov 		vms[area]->addr = kasan_unpoison_vmalloc(vms[area]->addr,
4119f6e39794SAndrey Konovalov 				vms[area]->size, KASAN_VMALLOC_PROT_NORMAL);
41201d96320fSAndrey Konovalov 
4121ca23e405STejun Heo 	kfree(vas);
4122ca23e405STejun Heo 	return vms;
4123ca23e405STejun Heo 
412468ad4a33SUladzislau Rezki (Sony) recovery:
4125e36176beSUladzislau Rezki (Sony) 	/*
4126e36176beSUladzislau Rezki (Sony) 	 * Remove previously allocated areas. There is no
4127e36176beSUladzislau Rezki (Sony) 	 * need in removing these areas from the busy tree,
4128e36176beSUladzislau Rezki (Sony) 	 * because they are inserted only on the final step
4129e36176beSUladzislau Rezki (Sony) 	 * and when pcpu_get_vm_areas() is success.
4130e36176beSUladzislau Rezki (Sony) 	 */
413168ad4a33SUladzislau Rezki (Sony) 	while (area--) {
4132253a496dSDaniel Axtens 		orig_start = vas[area]->va_start;
4133253a496dSDaniel Axtens 		orig_end = vas[area]->va_end;
413496e2db45SUladzislau Rezki (Sony) 		va = merge_or_add_vmap_area_augment(vas[area], &free_vmap_area_root,
41353c5c3cfbSDaniel Axtens 				&free_vmap_area_list);
41369c801f61SUladzislau Rezki (Sony) 		if (va)
4137253a496dSDaniel Axtens 			kasan_release_vmalloc(orig_start, orig_end,
4138253a496dSDaniel Axtens 				va->va_start, va->va_end);
413968ad4a33SUladzislau Rezki (Sony) 		vas[area] = NULL;
414068ad4a33SUladzislau Rezki (Sony) 	}
414168ad4a33SUladzislau Rezki (Sony) 
414268ad4a33SUladzislau Rezki (Sony) overflow:
4143e36176beSUladzislau Rezki (Sony) 	spin_unlock(&free_vmap_area_lock);
414468ad4a33SUladzislau Rezki (Sony) 	if (!purged) {
414568ad4a33SUladzislau Rezki (Sony) 		purge_vmap_area_lazy();
414668ad4a33SUladzislau Rezki (Sony) 		purged = true;
414768ad4a33SUladzislau Rezki (Sony) 
414868ad4a33SUladzislau Rezki (Sony) 		/* Before "retry", check if we recover. */
414968ad4a33SUladzislau Rezki (Sony) 		for (area = 0; area < nr_vms; area++) {
415068ad4a33SUladzislau Rezki (Sony) 			if (vas[area])
415168ad4a33SUladzislau Rezki (Sony) 				continue;
415268ad4a33SUladzislau Rezki (Sony) 
415368ad4a33SUladzislau Rezki (Sony) 			vas[area] = kmem_cache_zalloc(
415468ad4a33SUladzislau Rezki (Sony) 				vmap_area_cachep, GFP_KERNEL);
415568ad4a33SUladzislau Rezki (Sony) 			if (!vas[area])
415668ad4a33SUladzislau Rezki (Sony) 				goto err_free;
415768ad4a33SUladzislau Rezki (Sony) 		}
415868ad4a33SUladzislau Rezki (Sony) 
415968ad4a33SUladzislau Rezki (Sony) 		goto retry;
416068ad4a33SUladzislau Rezki (Sony) 	}
416168ad4a33SUladzislau Rezki (Sony) 
4162ca23e405STejun Heo err_free:
4163ca23e405STejun Heo 	for (area = 0; area < nr_vms; area++) {
416468ad4a33SUladzislau Rezki (Sony) 		if (vas[area])
416568ad4a33SUladzislau Rezki (Sony) 			kmem_cache_free(vmap_area_cachep, vas[area]);
416668ad4a33SUladzislau Rezki (Sony) 
4167ca23e405STejun Heo 		kfree(vms[area]);
4168ca23e405STejun Heo 	}
4169f1db7afdSKautuk Consul err_free2:
4170ca23e405STejun Heo 	kfree(vas);
4171ca23e405STejun Heo 	kfree(vms);
4172ca23e405STejun Heo 	return NULL;
4173253a496dSDaniel Axtens 
4174253a496dSDaniel Axtens err_free_shadow:
4175253a496dSDaniel Axtens 	spin_lock(&free_vmap_area_lock);
4176253a496dSDaniel Axtens 	/*
4177253a496dSDaniel Axtens 	 * We release all the vmalloc shadows, even the ones for regions that
4178253a496dSDaniel Axtens 	 * hadn't been successfully added. This relies on kasan_release_vmalloc
4179253a496dSDaniel Axtens 	 * being able to tolerate this case.
4180253a496dSDaniel Axtens 	 */
4181253a496dSDaniel Axtens 	for (area = 0; area < nr_vms; area++) {
4182253a496dSDaniel Axtens 		orig_start = vas[area]->va_start;
4183253a496dSDaniel Axtens 		orig_end = vas[area]->va_end;
418496e2db45SUladzislau Rezki (Sony) 		va = merge_or_add_vmap_area_augment(vas[area], &free_vmap_area_root,
4185253a496dSDaniel Axtens 				&free_vmap_area_list);
41869c801f61SUladzislau Rezki (Sony) 		if (va)
4187253a496dSDaniel Axtens 			kasan_release_vmalloc(orig_start, orig_end,
4188253a496dSDaniel Axtens 				va->va_start, va->va_end);
4189253a496dSDaniel Axtens 		vas[area] = NULL;
4190253a496dSDaniel Axtens 		kfree(vms[area]);
4191253a496dSDaniel Axtens 	}
4192253a496dSDaniel Axtens 	spin_unlock(&free_vmap_area_lock);
4193253a496dSDaniel Axtens 	kfree(vas);
4194253a496dSDaniel Axtens 	kfree(vms);
4195253a496dSDaniel Axtens 	return NULL;
4196ca23e405STejun Heo }
4197ca23e405STejun Heo 
4198ca23e405STejun Heo /**
4199ca23e405STejun Heo  * pcpu_free_vm_areas - free vmalloc areas for percpu allocator
4200ca23e405STejun Heo  * @vms: vm_struct pointer array returned by pcpu_get_vm_areas()
4201ca23e405STejun Heo  * @nr_vms: the number of allocated areas
4202ca23e405STejun Heo  *
4203ca23e405STejun Heo  * Free vm_structs and the array allocated by pcpu_get_vm_areas().
4204ca23e405STejun Heo  */
4205ca23e405STejun Heo void pcpu_free_vm_areas(struct vm_struct **vms, int nr_vms)
4206ca23e405STejun Heo {
4207ca23e405STejun Heo 	int i;
4208ca23e405STejun Heo 
4209ca23e405STejun Heo 	for (i = 0; i < nr_vms; i++)
4210ca23e405STejun Heo 		free_vm_area(vms[i]);
4211ca23e405STejun Heo 	kfree(vms);
4212ca23e405STejun Heo }
42134f8b02b4STejun Heo #endif	/* CONFIG_SMP */
4214a10aa579SChristoph Lameter 
42155bb1bb35SPaul E. McKenney #ifdef CONFIG_PRINTK
421698f18083SPaul E. McKenney bool vmalloc_dump_obj(void *object)
421798f18083SPaul E. McKenney {
421898f18083SPaul E. McKenney 	struct vm_struct *vm;
421998f18083SPaul E. McKenney 	void *objp = (void *)PAGE_ALIGN((unsigned long)object);
422098f18083SPaul E. McKenney 
422198f18083SPaul E. McKenney 	vm = find_vm_area(objp);
422298f18083SPaul E. McKenney 	if (!vm)
422398f18083SPaul E. McKenney 		return false;
4224bd34dcd4SPaul E. McKenney 	pr_cont(" %u-page vmalloc region starting at %#lx allocated at %pS\n",
4225bd34dcd4SPaul E. McKenney 		vm->nr_pages, (unsigned long)vm->addr, vm->caller);
422698f18083SPaul E. McKenney 	return true;
422798f18083SPaul E. McKenney }
42285bb1bb35SPaul E. McKenney #endif
422998f18083SPaul E. McKenney 
4230a10aa579SChristoph Lameter #ifdef CONFIG_PROC_FS
4231a10aa579SChristoph Lameter static void *s_start(struct seq_file *m, loff_t *pos)
4232e36176beSUladzislau Rezki (Sony) 	__acquires(&vmap_purge_lock)
4233d4033afdSJoonsoo Kim 	__acquires(&vmap_area_lock)
4234a10aa579SChristoph Lameter {
4235e36176beSUladzislau Rezki (Sony) 	mutex_lock(&vmap_purge_lock);
4236d4033afdSJoonsoo Kim 	spin_lock(&vmap_area_lock);
4237e36176beSUladzislau Rezki (Sony) 
42383f500069Szijun_hu 	return seq_list_start(&vmap_area_list, *pos);
4239a10aa579SChristoph Lameter }
4240a10aa579SChristoph Lameter 
4241a10aa579SChristoph Lameter static void *s_next(struct seq_file *m, void *p, loff_t *pos)
4242a10aa579SChristoph Lameter {
42433f500069Szijun_hu 	return seq_list_next(p, &vmap_area_list, pos);
4244a10aa579SChristoph Lameter }
4245a10aa579SChristoph Lameter 
4246a10aa579SChristoph Lameter static void s_stop(struct seq_file *m, void *p)
4247d4033afdSJoonsoo Kim 	__releases(&vmap_area_lock)
42480a7dd4e9SWaiman Long 	__releases(&vmap_purge_lock)
4249a10aa579SChristoph Lameter {
4250d4033afdSJoonsoo Kim 	spin_unlock(&vmap_area_lock);
42510a7dd4e9SWaiman Long 	mutex_unlock(&vmap_purge_lock);
4252a10aa579SChristoph Lameter }
4253a10aa579SChristoph Lameter 
4254a47a126aSEric Dumazet static void show_numa_info(struct seq_file *m, struct vm_struct *v)
4255a47a126aSEric Dumazet {
4256e5adfffcSKirill A. Shutemov 	if (IS_ENABLED(CONFIG_NUMA)) {
4257a47a126aSEric Dumazet 		unsigned int nr, *counters = m->private;
425851e50b3aSEric Dumazet 		unsigned int step = 1U << vm_area_page_order(v);
4259a47a126aSEric Dumazet 
4260a47a126aSEric Dumazet 		if (!counters)
4261a47a126aSEric Dumazet 			return;
4262a47a126aSEric Dumazet 
4263af12346cSWanpeng Li 		if (v->flags & VM_UNINITIALIZED)
4264af12346cSWanpeng Li 			return;
42657e5b528bSDmitry Vyukov 		/* Pair with smp_wmb() in clear_vm_uninitialized_flag() */
42667e5b528bSDmitry Vyukov 		smp_rmb();
4267af12346cSWanpeng Li 
4268a47a126aSEric Dumazet 		memset(counters, 0, nr_node_ids * sizeof(unsigned int));
4269a47a126aSEric Dumazet 
427051e50b3aSEric Dumazet 		for (nr = 0; nr < v->nr_pages; nr += step)
427151e50b3aSEric Dumazet 			counters[page_to_nid(v->pages[nr])] += step;
4272a47a126aSEric Dumazet 		for_each_node_state(nr, N_HIGH_MEMORY)
4273a47a126aSEric Dumazet 			if (counters[nr])
4274a47a126aSEric Dumazet 				seq_printf(m, " N%u=%u", nr, counters[nr]);
4275a47a126aSEric Dumazet 	}
4276a47a126aSEric Dumazet }
4277a47a126aSEric Dumazet 
4278dd3b8353SUladzislau Rezki (Sony) static void show_purge_info(struct seq_file *m)
4279dd3b8353SUladzislau Rezki (Sony) {
4280dd3b8353SUladzislau Rezki (Sony) 	struct vmap_area *va;
4281dd3b8353SUladzislau Rezki (Sony) 
428296e2db45SUladzislau Rezki (Sony) 	spin_lock(&purge_vmap_area_lock);
428396e2db45SUladzislau Rezki (Sony) 	list_for_each_entry(va, &purge_vmap_area_list, list) {
4284dd3b8353SUladzislau Rezki (Sony) 		seq_printf(m, "0x%pK-0x%pK %7ld unpurged vm_area\n",
4285dd3b8353SUladzislau Rezki (Sony) 			(void *)va->va_start, (void *)va->va_end,
4286dd3b8353SUladzislau Rezki (Sony) 			va->va_end - va->va_start);
4287dd3b8353SUladzislau Rezki (Sony) 	}
428896e2db45SUladzislau Rezki (Sony) 	spin_unlock(&purge_vmap_area_lock);
4289dd3b8353SUladzislau Rezki (Sony) }
4290dd3b8353SUladzislau Rezki (Sony) 
4291a10aa579SChristoph Lameter static int s_show(struct seq_file *m, void *p)
4292a10aa579SChristoph Lameter {
42933f500069Szijun_hu 	struct vmap_area *va;
4294d4033afdSJoonsoo Kim 	struct vm_struct *v;
4295d4033afdSJoonsoo Kim 
42963f500069Szijun_hu 	va = list_entry(p, struct vmap_area, list);
42973f500069Szijun_hu 
4298688fcbfcSPengfei Li 	if (!va->vm) {
4299bba9697bSBaoquan He 		if (va->flags & VMAP_RAM)
4300dd3b8353SUladzislau Rezki (Sony) 			seq_printf(m, "0x%pK-0x%pK %7ld vm_map_ram\n",
430178c72746SYisheng Xie 				(void *)va->va_start, (void *)va->va_end,
4302dd3b8353SUladzislau Rezki (Sony) 				va->va_end - va->va_start);
430378c72746SYisheng Xie 
43047cc7913eSEric Dumazet 		goto final;
430578c72746SYisheng Xie 	}
4306d4033afdSJoonsoo Kim 
4307d4033afdSJoonsoo Kim 	v = va->vm;
4308a10aa579SChristoph Lameter 
430945ec1690SKees Cook 	seq_printf(m, "0x%pK-0x%pK %7ld",
4310a10aa579SChristoph Lameter 		v->addr, v->addr + v->size, v->size);
4311a10aa579SChristoph Lameter 
431262c70bceSJoe Perches 	if (v->caller)
431362c70bceSJoe Perches 		seq_printf(m, " %pS", v->caller);
431423016969SChristoph Lameter 
4315a10aa579SChristoph Lameter 	if (v->nr_pages)
4316a10aa579SChristoph Lameter 		seq_printf(m, " pages=%d", v->nr_pages);
4317a10aa579SChristoph Lameter 
4318a10aa579SChristoph Lameter 	if (v->phys_addr)
4319199eaa05SMiles Chen 		seq_printf(m, " phys=%pa", &v->phys_addr);
4320a10aa579SChristoph Lameter 
4321a10aa579SChristoph Lameter 	if (v->flags & VM_IOREMAP)
4322f4527c90SFabian Frederick 		seq_puts(m, " ioremap");
4323a10aa579SChristoph Lameter 
4324a10aa579SChristoph Lameter 	if (v->flags & VM_ALLOC)
4325f4527c90SFabian Frederick 		seq_puts(m, " vmalloc");
4326a10aa579SChristoph Lameter 
4327a10aa579SChristoph Lameter 	if (v->flags & VM_MAP)
4328f4527c90SFabian Frederick 		seq_puts(m, " vmap");
4329a10aa579SChristoph Lameter 
4330a10aa579SChristoph Lameter 	if (v->flags & VM_USERMAP)
4331f4527c90SFabian Frederick 		seq_puts(m, " user");
4332a10aa579SChristoph Lameter 
4333fe9041c2SChristoph Hellwig 	if (v->flags & VM_DMA_COHERENT)
4334fe9041c2SChristoph Hellwig 		seq_puts(m, " dma-coherent");
4335fe9041c2SChristoph Hellwig 
4336244d63eeSDavid Rientjes 	if (is_vmalloc_addr(v->pages))
4337f4527c90SFabian Frederick 		seq_puts(m, " vpages");
4338a10aa579SChristoph Lameter 
4339a47a126aSEric Dumazet 	show_numa_info(m, v);
4340a10aa579SChristoph Lameter 	seq_putc(m, '\n');
4341dd3b8353SUladzislau Rezki (Sony) 
4342dd3b8353SUladzislau Rezki (Sony) 	/*
434396e2db45SUladzislau Rezki (Sony) 	 * As a final step, dump "unpurged" areas.
4344dd3b8353SUladzislau Rezki (Sony) 	 */
43457cc7913eSEric Dumazet final:
4346dd3b8353SUladzislau Rezki (Sony) 	if (list_is_last(&va->list, &vmap_area_list))
4347dd3b8353SUladzislau Rezki (Sony) 		show_purge_info(m);
4348dd3b8353SUladzislau Rezki (Sony) 
4349a10aa579SChristoph Lameter 	return 0;
4350a10aa579SChristoph Lameter }
4351a10aa579SChristoph Lameter 
43525f6a6a9cSAlexey Dobriyan static const struct seq_operations vmalloc_op = {
4353a10aa579SChristoph Lameter 	.start = s_start,
4354a10aa579SChristoph Lameter 	.next = s_next,
4355a10aa579SChristoph Lameter 	.stop = s_stop,
4356a10aa579SChristoph Lameter 	.show = s_show,
4357a10aa579SChristoph Lameter };
43585f6a6a9cSAlexey Dobriyan 
43595f6a6a9cSAlexey Dobriyan static int __init proc_vmalloc_init(void)
43605f6a6a9cSAlexey Dobriyan {
4361fddda2b7SChristoph Hellwig 	if (IS_ENABLED(CONFIG_NUMA))
43620825a6f9SJoe Perches 		proc_create_seq_private("vmallocinfo", 0400, NULL,
436344414d82SChristoph Hellwig 				&vmalloc_op,
436444414d82SChristoph Hellwig 				nr_node_ids * sizeof(unsigned int), NULL);
4365fddda2b7SChristoph Hellwig 	else
43660825a6f9SJoe Perches 		proc_create_seq("vmallocinfo", 0400, NULL, &vmalloc_op);
43675f6a6a9cSAlexey Dobriyan 	return 0;
43685f6a6a9cSAlexey Dobriyan }
43695f6a6a9cSAlexey Dobriyan module_init(proc_vmalloc_init);
4370db3808c1SJoonsoo Kim 
4371a10aa579SChristoph Lameter #endif
4372208162f4SChristoph Hellwig 
4373208162f4SChristoph Hellwig void __init vmalloc_init(void)
4374208162f4SChristoph Hellwig {
4375208162f4SChristoph Hellwig 	struct vmap_area *va;
4376208162f4SChristoph Hellwig 	struct vm_struct *tmp;
4377208162f4SChristoph Hellwig 	int i;
4378208162f4SChristoph Hellwig 
4379208162f4SChristoph Hellwig 	/*
4380208162f4SChristoph Hellwig 	 * Create the cache for vmap_area objects.
4381208162f4SChristoph Hellwig 	 */
4382208162f4SChristoph Hellwig 	vmap_area_cachep = KMEM_CACHE(vmap_area, SLAB_PANIC);
4383208162f4SChristoph Hellwig 
4384208162f4SChristoph Hellwig 	for_each_possible_cpu(i) {
4385208162f4SChristoph Hellwig 		struct vmap_block_queue *vbq;
4386208162f4SChristoph Hellwig 		struct vfree_deferred *p;
4387208162f4SChristoph Hellwig 
4388208162f4SChristoph Hellwig 		vbq = &per_cpu(vmap_block_queue, i);
4389208162f4SChristoph Hellwig 		spin_lock_init(&vbq->lock);
4390208162f4SChristoph Hellwig 		INIT_LIST_HEAD(&vbq->free);
4391208162f4SChristoph Hellwig 		p = &per_cpu(vfree_deferred, i);
4392208162f4SChristoph Hellwig 		init_llist_head(&p->list);
4393208162f4SChristoph Hellwig 		INIT_WORK(&p->wq, delayed_vfree_work);
4394*062eacf5SUladzislau Rezki (Sony) 		xa_init(&vbq->vmap_blocks);
4395208162f4SChristoph Hellwig 	}
4396208162f4SChristoph Hellwig 
4397208162f4SChristoph Hellwig 	/* Import existing vmlist entries. */
4398208162f4SChristoph Hellwig 	for (tmp = vmlist; tmp; tmp = tmp->next) {
4399208162f4SChristoph Hellwig 		va = kmem_cache_zalloc(vmap_area_cachep, GFP_NOWAIT);
4400208162f4SChristoph Hellwig 		if (WARN_ON_ONCE(!va))
4401208162f4SChristoph Hellwig 			continue;
4402208162f4SChristoph Hellwig 
4403208162f4SChristoph Hellwig 		va->va_start = (unsigned long)tmp->addr;
4404208162f4SChristoph Hellwig 		va->va_end = va->va_start + tmp->size;
4405208162f4SChristoph Hellwig 		va->vm = tmp;
4406208162f4SChristoph Hellwig 		insert_vmap_area(va, &vmap_area_root, &vmap_area_list);
4407208162f4SChristoph Hellwig 	}
4408208162f4SChristoph Hellwig 
4409208162f4SChristoph Hellwig 	/*
4410208162f4SChristoph Hellwig 	 * Now we can initialize a free vmap space.
4411208162f4SChristoph Hellwig 	 */
4412208162f4SChristoph Hellwig 	vmap_init_free_space();
4413208162f4SChristoph Hellwig 	vmap_initialized = true;
4414208162f4SChristoph Hellwig }
4415